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US5684671A - Packaging architecture for a data server - Google Patents

Packaging architecture for a data server
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US5684671A
US5684671AUS08/518,003US51800395AUS5684671AUS 5684671 AUS5684671 AUS 5684671AUS 51800395 AUS51800395 AUS 51800395AUS 5684671 AUS5684671 AUS 5684671A
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United States
Prior art keywords
data server
housing
rack
door
front door
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US08/518,003
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Forrest B. Hobbs
Richard G. Blewett
Scott A. Wentzka
Steve S. Chen
Kitrick B. Sheets
Sheldon D. Stevens
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International Business Machines Corp
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Sequent Computer Systems Inc
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Assigned to CHEN SYSTEMS CORPORATIONreassignmentCHEN SYSTEMS CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BLEWETT, RICHARD G., CHASE, STEVEN S., HOBBS, FORREST B., SHEETS, KITRICK B., STEVENS, SHELDON D., WENTZKA, SCOTT A.
Assigned to SEQUENT COMPUTER SYSTEMS, INC.reassignmentSEQUENT COMPUTER SYSTEMS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CHEN SYSTEMS CORPORATION
Priority to US08/962,747prioritypatent/US5877938A/en
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Publication of US5684671ApublicationCriticalpatent/US5684671A/en
Assigned to INTERNATIONAL BUSINESS MACHINES CORPORATIONreassignmentINTERNATIONAL BUSINESS MACHINES CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SEQUENT COMPUTER SYSTEMS, INC.
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Abstract

A rack-mount data server includes a housing, a plurality of data server components supported by the housing, the components including at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and at least one power supply, and a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating the at least one peripheral storage device and a second rack accommodating the logic chassis, the housing supporting the second rack underneath the first rack as the second topmost rack. The data server also includes a front door and a top door, the top door and the front door being interlockable with each other such that when the top door and the front door are in their closed positions, one of the top door and the front door locks the other of the top door and the front door in its closed position. A security system monitors the closed and/or locked status of a number of components, including the front door.

Description

CROSS-REFERENCE TO RELATED APPLICATION
The subject matter of this application is related to the subject matter of commonly assigned, concurrently filed U.S. Design application No. 29/042,986 (Atty. Docket No. 1451.06-US-01), which is incorporated herein by reference.
BACKGROUND OF THE INVENTION
1. Field of the Invention
The invention relates to computing devices, and more particularly, to packaging architectures for arranging and enclosing data server components.
2. Description of Related Art
Data servers are well-known in the art for linking computing resources within networks. Data server components, including hard disk drives, peripheral storage devices, power supplies, and logic components, are available in a variety of configurations.
A number of prior art data server configurations waste significant internal space, and thus are unnecessarily large, because the data server components are significantly spaced apart to allow room for repair and replacement tasks. Up to 40% of the internal space in some servers is empty, and thus wasted, for the sake of easy serviceability. Other configurations sacrifice ready access and serviceability for compactness, and are consequently extremely difficult to repair and maintain. Some smaller servers, for example, place peripheral storage devices and a logic chassis at the same level within the server, necessitating disassembly and/or removal of the storage devices to service the logic chassis, and vice versa. Additionally, many internal components of certain data servers can be accessed only from the side of the server for repair and/or maintenance. Accessing these components through the side of the server necessitates a two-to-three foot space between adjacent servers, rolling a server away from an adjacent server, and/or disconnecting a server from its power source. A need has arisen, therefore, for a data server that is both compact and serviceable, and that does not require side access for standard repair and maintenance.
Other typical data server configurations present a significant disadvantage in that the data server components that are accessed and used most often, e.g. peripheral storage devices, are placed at least partially at an operator-inconvenient location. Locating peripheral storage devices at floor level, for example, requires an operator to stoop down to supplement, swap or service the peripheral storage devices. A need has arisen, therefore, for a more user-friendly data server providing easier access to often-used components.
Additionally, many prior art servers are vulnerable to unauthorized access at a number of points, and/or provide inadequate safety/warning devices to indicate that access is being attempted to the interior of the data server which potentially could compromise the integrity of data stored on the server. A need has arisen, therefore, for a data server that minimizes the number of access points while providing effective securement and monitoring of those access points. In this regard, most prior art servers fail to prevent unauthorized removal of the server doors. A need has thus arisen for a server that simply but effectively prevents unauthorized door removal and/or access to the interior of the server.
Finally, a number of prior art servers fail to adequately control airflow through and past essential components of the server, causing heat buildup and thermal-induced failure. Recirculation of warm air through the server, for example, has been problematic in a number of previous devices. A need has arisen, therefore, for a server that provides better air circulation and thus more effectively cools the data server components.
SUMMARY OF THE INVENTION
To address the above and other disadvantages, a rack-mount data server according to an embodiment of the invention includes a housing, a plurality of data server components supported by the housing, and a plurality of racks coupled with the housing to accommodate the data server components. The data server components include at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and at least one power supply. The racks coupled with the housing include a first, topmost rack accommodating the at least one peripheral storage device, and a second rack accommodating the logic chassis. The housing supports the second rack underneath the first rack as the second-topmost rack.
According to one embodiment, the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing, allowing access to the logic chassis from the top of the data server. This embodiment also preferably includes a plurality of slides, the first rack being mounted on the slides to move linearly to its extended position. Additionally, the logic chassis preferably includes a movable cover, which is swingable to an open position when the first rack is moved to its extended position. The cover preferably is pivotally mounted to the logic chassis to swing into a space that was occupied by the first rack in its housed position. In this way, the present invention allows for more current operation access to peripheral storage devices by locating them in the first on the top of the housing, while still allowing easy access to the logic chassis located on the second rack.
According to another aspect of the invention, a rack-mount data server embodiment includes a housing, a plurality of data server components, a plurality of racks coupled with the housing to accommodate the data server components, and front and top doors. The top door and the front door are interlockable with each other, such that when the top door and the front door are closed, one of the top door and the front door locks the other of the top door and the front door in its closed position. According to one embodiment, the front door includes a lip and the top door includes an abutting surface, such that the lip of the front door overlaps the abutting surface of the top door to prevent the top door from opening. In this way the present invention provides a mechanism to effectively prevent unauthorized door removal.
This data server embodiment also preferably includes at least one detection device, coupled with the front door and/or the top door and with a system management unit of the data server. The detection device preferably signals the system management unit upon attempted access to data server components from outside the data server via the door. According to various embodiments, the detection device signals the system management unit when the door is unlocked and/or opened. Further, the detection device preferably includes a microswitch, but alternatively can include other similar components. Additionally, this data server embodiment preferably includes a system interrupt switch, such as a system reset switch or a system abort switch, for example. The system interrupt switch preferably is placed so as to be accessible only via one of the top door and the front door.
Also according to this embodiment, at least one detection device preferably is coupled with a peripheral access door that allows access to at least one peripheral storage device of the data server. The detection device preferably signals the system management unit upon attempted access to the peripheral rack via the peripheral access door. Further, the data server preferably includes a detection device coupled with a cover of a logic chassis of the data server, to signal the system management unit upon attempted access to the logic chassis via the cover. The logic chassis preferably includes a plurality of printed circuit modules that are inaccessible from the back of the data server.
According to another aspect of the invention, a rack-mount data server embodiment includes a housing, a plurality of data server components, a plurality of racks to accommodate the components, and a front door covering the front side of the housing. The front door preferably includes a mesh structure on at least a portion of an exterior surface, to allow airflow through the front door. A plurality of fans are positioned to move air from outside the front of the data server housing, through the mesh structure of the front door, and toward the back side of the housing. At least one of the fans preferably includes a fan speed sensor to signal the system management unit of the data server upon deviation of fan speed from a predetermined level. The mesh structure preferably extends a majority of the length of the front door to allow airflow therethrough, and the mesh structure preferably includes at least one screen.
According to another aspect of the invention, a side-by-side arrangement of multiple rack-mount data servers includes a plurality of immediately adjacent data servers arranged side-by-side to form a row of data servers. Each data server includes a housing, a plurality of data server components including a plurality of disk drives, a plurality of racks accommodating the data server components, a front door, and at least one hinge coupled with the front door and with the housing to cause the front door to open without interfering with an immediately adjacent data server. The disk drives preferably include a plurality of plug-and-play disk drives. Each data server according to this embodiment also preferably includes a top door having at least one hinge to cause the top door to open without interfering with an immediately adjacent data server. In this way, multiple servers in accordance with the present invention can be positioned side-by-side without requiring the user to move the servers to allow for side panel access when service is required.
According to another aspect of the invention, a rack-mount data server includes a housing, a plurality of data server components, a plurality of racks to accommodate the data server components, and a front door. The data server according to this embodiment also preferably includes at least one hinge to cause the front door to move to an open position without interfering with an immediately adjacent data server. The hinge preferably defines a substantially vertical pivot axis passing through an edge of the front door. The data server also preferably includes a top door and associated hinge to cause the top door to open without interfering with an immediately adjacent data server. The hinge preferably includes a stepped section and the front door preferably includes a protrusion, the protrusion being located within the stepped section to prevent vertical removal of the front door when the front door is in its closed position. The protrusion preferably is removed from the stepped section to allow vertical removal of the front door when the front door is in its open position.
Other important aspects and embodiments, such as, but not limited to, spill resistance, internal wiring arrangements, I/O channel/disk drive connections, and the construction and loading of the disk drive racks and other racks, will be described below.
BRIEF DESCRIPTION OF THE DRAWINGS
Embodiments of the invention will be described with reference to the Figures, in which like reference numerals denote like elements and in which:
FIG. 1 is a perspective view of a data server with external skins on, according to an embodiment of the invention;
FIG. 2 is a rear perspective view of the FIG. 1 data server;
FIG. 3 is a perspective view of the FIG. 1 data server with a peripheral access door in an open position;
FIG. 4 is a perspective view of the FIG. 1 data server with top, front and rear doors open;
FIG. 4A is a perspective, close-up view of a front hinge structure according to one embodiment of the invention;
FIG. 4B is a perspective, close-up view of a top portion of the FIG. 1 data server;
FIG. 5 is a rear perspective view of the FIG. 1 data server with top, front and rear doors open;
FIG. 6 is a perspective view of the FIG. 1 data server showing movement of the peripheral rack and card cage lid, according to one embodiment;
FIG. 7 is a rear perspective view of a data server as shown in FIG. 6;
FIG. 8 is a perspective view of the FIG. 1 data server, with external skins off;
FIG. 9 is a rear perspective view of the FIG. 1 data server, also with external skins off;
FIG. 9A is a rear perspective view similar to FIG. 9 but illustrated with additional features;
FIG. 10 is a perspective view of a peripheral rack according to one embodiment;
FIG. 11 is an exploded view of the FIG. 10 peripheral rack;
FIG. 12 is a perspective view of a disk drive rack according to an embodiment of the invention;
FIG. 13 is an exploded view of the FIG. 12 rack;
FIG. 14 is a perspective view of a power supply rack according to one embodiment;
FIG. 15 is an exploded view of the FIG. 14 rack;
FIG. 16 is a perspective view of a card cage rack according to one embodiment;
FIG. 17 is a rear perspective view of the FIG. 16 card cage rack; and
FIG. 18 is a front view of a side-by-side arrangement of multiple rack-data servers according to one embodiment of the invention.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
This application describes and illustrates data server packaging architecture in various arrangements, including skins-on, skins-off, doors-open and doors-closed arrangements. The invention, however, is not necessarily limited to data servers. On the contrary, embodiments of the invention have application to a wide variety of computing hardware, not just data servers. Therefore, while preferred embodiments of the invention will be described with respect to data servers and data server architecture, the invention is not necessarily limited to these devices.
FIGS. 1-9A of the application show rack-mount data server 10, with a plurality of skins covering internal housing frame 15 (FIG. 8) to provide an outer surface ofdata server 10. The skins includefront door 20,rear door 35, top door/lid 30,right side wall 25, and left side wall 27 (FIG. 5). In its closed position (e.g. FIG. 1),front door 20 covers the front side ofhousing 15, and in its open position (e.g. FIG. 4),front door 20 allows access to internal components ofdata server 10, to be described below, from the front side ofhousing 15. Similarly,top door 30 is positioned to cover the top side ofhousing 15 whentop door 30 is in a closed position and to allow access to at least one of the data server components from the top side ofhousing 15 whentop door 30 is in an open position.
According to one embodiment,front door 20 is formed of a molded plastic, although other materials, such as urethane, for example, also are contemplated according to the invention. Additionally,front door 20 preferably is provided with at least onemesh structure 23, such as a screen, to provide a macrofilter that keeps large particulate matter out ofdata server 10. Mesh structure preferably extends over a majority of the length offront door 20, for example approximately 3/4 of the length, but of course could also extend less than a majority of the length. To better filter incoming air,mesh structure 23 preferably includes two superposed screens, the combination of which also produces an aesthetically pleasing patterned effect, e.g., a moire effect.
Right side wall 25,left side wall 27,top door 30 andrear door 35 all preferably are formed of sheet metal, although, as withfront door 20, alternative materials are also contemplated. The sheet metal preferably is zinc-plated and then painted, to maximize endurance and aesthetic appeal, or can be left bare or provided with other coatings.
Front door 20 preferably is opened by inserting a proper key intolock 90. Of course, other, non-key locking mechanisms also can be used. Althoughrear door 35 of the illustrated embodiment is opened merely by sliding latch 38 to one side, a locking rear door also is contemplated according to the invention.Top door 30 preferably does not include a dedicated locking mechanism. According to the illustrated embodiment, however,top door 30 is held in its closed position byfront door 20, as will be described.
Rear door 35 is designed to swing between open and closed positions on external hinges 37 (FIG. 2), and also is designed for easy removal fromhousing 15. For purposes of this description, forrear door 35 as well as for front andtop doors 20, 30, the term "open position" should be interpreted to mean open and attached tohousing 15, or partially or completely removed therefrom.
Behind itsdoors 20, 30, 35 andside walls 25, 27,housing 15 ofdata server 10 supports a plurality of data server components contained within a computer unit.Data server 10 preferably includes a plurality of racks, five in the illustrated embodiment, each of which can be associated with a different function of the data server. Of course, a number of racks other than five also can be provided, and multiple racks can be associated with a single function or a single rack can be associated with multiple functions. Although the configuration and positioning of the various racks in typical rack-mount data servers waste a large amount of space,data server 10 according to the invention maximizes efficient space usage and thus improves upon the standard way of thinking in the art, while still maintaining a "look" that does not necessarily stand out as unusual.
The racks ofdata server 10 will now be described in greater detail. Topmost rack 40 (FIG. 4) preferably is a peripheral rack that accommodates at least oneperipheral storage device 43, such as one or more floppy disk drive, CD ROM drive, boot drive, tape drive, and/or other peripheral storage devices, especially peripheral storage devices that require user access in the form of insertion or withdrawal of a storage medium from the peripheral storage device.Front door 20 preferably includesperipheral access door 75, which in the illustrated embodiment is hinged onfront door 20 to swing down and exposeperipheral devices 43, as shown, for example, in FIG. 3.Peripheral access door 75 also can be completely removable fromfront door 20. Given the frequency with which peripheral devices are generally accessed,peripheral door 75 typically is not locked. Of course, however, a lock could be provided to create a more secure environment. According to one embodiment,peripheral door 75 is composed primarily of an at leastsemi-transparent plexiglass 76, surrounded by moldedframe 77, although of course other materials and/or material combinations also are contemplated.
Immediately underperipheral rack 40 in the embodiment shown in FIG. 4, for example, islogic chassis 45, also referred to as a card cage rack.Card cage rack 45supports card cage 47, which includes a plurality of printed circuit modules that provide the basic logic functions for the data server and generally are among the most valuable components of the machine. To cool the modules,card cage rack 45 preferably includes a plurality offans 41, to be described in greater detail below.
Beneathcard cage rack 45,housing 15 supports disk drive racks 50, 55.Racks 50, 55 do not have to be completely populated with disk drives, although they are completely populated in the illustrated embodiments. In the event a user ofdata server 10 desires to use only a portion of the possible total population, the empty space created by the absence of one ormore disk drives 57 preferably is covered by a flat plate or other object, although of course the empty space can also be left open. Disk drives 57 preferably are of the plug-and-play type and preferably are hot-swappable, meaning that they can be replaced upon failure without turning offdata server 10. Although two disk drive racks 50 are provided according to this embodiment, asingle rack 50 or three ormore racks 50 also can be provided according to the invention.
Beneath disk drive racks 50,power supply rack 60 supports a plurality of hot-swappable power supplies 65, also referred to as power supply elements, as well assystem management unit 70.System management unit 70 includes a maintenance/management computer that performs a number of functions, as will be described. Between one and threepower supplies 65 can be provided, depending upon the degree of redundancy desired and on the amount of power drawn bydata server 10. Generally, the maximum number ofpower supplies 65 required bydata server 10 is two, so that athird power supply 65 can be provided to create redundancy. The heavier components ofdata server 10, i.e., power supplies 65,system management unit 70, anddisk drives 57, are placed low in the machine to keep the overall center of gravity lower and thus provide greater stability.
As shown in the Figures and as described above,peripheral rack 40 preferably is a topmost rack, andcard cage rack 45 preferably is located immediately underneathperipheral rack 40. This positioning is very convenient for the user and represents a significant improvement over many prior art devices, becauseperipheral rack 40 typically is the portion ofdata server 10 that is accessed most often. Users typically accessperipheral rack 40, for example, to replace/reload a back-up drive or a floppy drive, to copy data on or offdata server 10, or to load new software. Placingperipheral rack 40 at the topmost position ofdata server 10 makesrack 40 much more convenient to access, whether the user is standing or sitting, and eliminates the need for the user to bend down to the floor, for example.
Of course, access tocard cage 47, which as described above includes many valuable components, also is important. Therefore,peripheral rack 40 advantageously is mounted onslides 42, to linearly move from a housed position, at least partially withinhousing 15, to an extended position, at least partially outsidehousing 15. Note, for example,arrows 44 in FIG. 6, which show the linear movement ofperipheral rack 40 from its housed position toward its extended position.
Slidingperipheral rack 40 from its housed position to its extended position allows access tologic chassis 45 from the top ofdata server 10.Logic chassis 45 preferably includescover 46, pivotable on hinge 49 (FIGS. 16-17) in the direction of arrow 48 (FIG. 6) whenperipheral rack 40 is moved out of the way to its extended position. Upon swinging logic chassis cover 46 to its open position,logic chassis 45 is fully accessible from the top ofdata server 10.
The sliding peripheral rack and underlying card cage according to the invention overcome a number of disadvantages associated with prior art machines. In most prior art machines, the card cage rack is located as the topmost component for two reasons: (1) to facilitate access to the logic chassis through the top or front of the machine, and (2) to increase heat dissipation, as most of the heat energy is generated by the logic chassis. If, for example,card cage rack 45 were immediately behindperipheral rack 40 instead of underneath it, accessibility would increase, but the overall footprint of the machine would also increase. Alternatively, ifperipheral rack 40 andcard cage rack 45 were spaced sufficiently to allow better access to each, up to 30-40% empty space inside the housing would result. Serviceability and accessibility, therefore, would come at the expense of compactness. By placingcard cage rack 45 underneathperipheral rack 40 and providing structure to allowperipheral rack 40 to slide linearly to an extended position,data server 10 according to the invention combines compactness and serviceability in a manner unmatched in the prior art.
The racks and rack-mounted components ofdata server 10 preferably are one hundred percent serviceable from the front, top and rear sides of the data server, via front, top andrear doors 20, 30 and 35. For the most common servicing thatdata server 10 is likely to require in its lifetime, therefore, no access throughside walls 25, 27 will be necessary. This also represents a significant advantage over prior art machines. Because no access viaside walls 25, 27 is required, a plurality of immediatelyadjacent data servers 10 can be arranged side-by-side to form a row 12 of data servers, as shown, for example, in FIG. 18. Unlike many prior art data server arrangements, in which 3-6 feet of space is required between machines and/or the machines have to be unplugged and rolled out of the row for service,data servers 10 according to the invention can be arranged immediately adjacent to one another, even touching each other, and still be one hundred percent serviceable without being moved. To allow top and front doors ofdata server 10 to be swung open without interfering with an immediately adjacent server or other object, each door includes a preferred hinge arrangement, as will be described.
To prevent unauthorized access to the data server components throughtop door 30,front door 20 andtop door 30 preferably overlap, so thattop door 30 physically cannot be opened untilfront door 20 is unlocked and opened.Front door 20 preferably includes lip 80 (as shown in FIG. 4) at its upper rear side, andtop door 30 preferably includes an abutting surface orflange 85, preferably at its front side. Whentop door 85 is in its closed position andfront door 20 is then closed,lip 80overlaps abutting surface 85 to preventtop door 30 from opening. Thus, bothtop door 30 andfront door 20 are effectively secured by asingle lock 90. According to a reverse embodiment, however,top door 30 can include a lock and be configured with a lip, to overlap and/or engage a protruding surface onfront door 20 and thereby preventfront door 20 from opening. Thus,top door 30 andfront door 20 are interlockable with each other, such that whentop door 30 andfront door 20 are in their closed positions, one oftop door 30 andfront door 20 locks the other oftop door 30 andfront door 20 in its closed position. Thus, one lock, 90 in the illustrated embodiment, controls access to both the front and top ofdata server 10.
Data server 10 also preferably includes one or more detection devices, such as microswitches, coupled with various selected doors and/or locks to detect attempted access to the internal components ofdata server 10 from the outside. According to one embodiment, the detection devices signalssystem management unit 70 upon unlocking and/or opening of a door, indicating that an attempt at access is occurring.System management unit 70 then can take appropriate action, chosen by the operator, such as signaling one or more persons or other computing devices, lighting one ormore lights 115 on light bar 105 (e.g., FIGS. 3 and 6), initiating a complete or partial power-down of the machine, alerting law enforcement agencies, altering the physical characteristics of the room in which the data server is located, or taking other appropriate and/or preventive action.
In the example of the illustrated embodiment,data server 10 preferably includes one or more of the following detection devices: device 95 (e.g. FIG. 4), which detects unlocking offront door 20, device 97 (e.g. FIG. 4), which detects opening offront door 20, device 98 (e.g. FIG. 4), which detects opening oftop door 30, device 99 (e.g. FIGS. 4 and 5), which detects opening ofrear door 35, device 96 (e.g. FIGS. 3 and 4), which detects opening ofperipheral door 75, and/or device 94 (e.g. FIG. 6), which detects opening ofcard cage lid 46. Althoughdevices 94 and 96-99 are shown in specific locations in the illustrations, alternative placements, at a variety of locations, are also contemplated.
Typically, the components ofdata server 10 that are the most important to protect are located behindfront door 20, and are accessible only after unlocking and openingfront door 20. For example, hard disk drives 57 andsystem management unit 70 are both relatively expensive and are most susceptible to unauthorized outside access to the data files being stored ondata server 10. Therefore, hard disk drives 57 andsystem management unit 70 are accessible only upon unlocking and openingfront door 20. System interrupt switches, such as system reset switch(es), system abort switch(es), and/or system off switch(es), also are behindfront door 20, preferably atlocation 100 as shown in FIG. 6. On-switch 110 is onlight bar 105 and thus accessible throughperipheral door 75 without openingfront door 20, according to the illustrated embodiment, because data typically cannot be corrupted by turningdata server 10 on. Alternatively, however, on-switch 110 also can be located behindfront door 20, and/or an off switch can be located so as to be accessible without openingfront door 20.
The internal modules ofcard cage 47 and other such components are accessible only throughtop door 30, buttop door 30 is not openable untilfront door 20 is opened, as described earlier. By placing the most critical and valuable components and switches under lock and key, and by constant monitoring of the locked and/or closed states of the doors by the detection devices,data server 10 according to the invention achieves significant security advantages over the prior art.
To preventdata server 10 from overheating, thermal controls are employed to maintain internal temperatures within a desired range. To this end,data server 10 includes a plurality of fans, positioned at the front and rear sides ofhousing 15, to move air from outside the front ofhousing 15, throughmesh structure 23 infront door 20, toward the rear ofhousing 15, and finally through a plurality of vents (not shown) inrear door 35. By providing a front-to-back airflow instead of back-to-front or bottom-to-top airflow, as in many prior art devices, very little if any heated air is recirculated into the server from the area immediately behind it, or is recirculated within the server from rack to rack. Instead, cold air is pulled off the front of the machine and transferred out the back of the machine, without significant mixing of ambient cool air with heated air. This becomes especially important whendata server 10 is located in a room without traditional computer-room air controls, such as a personal office, or even a room without any air conditioning whatsoever.
FIG. 4 illustrates a number of fans at the front ofserver 10. Eachpower supply 65 preferably includes its own fan 66, for drawing air from the front of the server and directing it toward the rear of the server through the power supplies.Card cage rack 45 also supports a plurality offans 41, moving air from the front of the machine, throughcard cage 47 and toward the rear. At the rear ofserver 10, as shown in FIG. 5, for example, eachdisk drive rack 50, 55 supports a plurality of rear-mountedfans 58, which draw air from inside the disk drive racks, and thus from the front of disk drive racks 50, 55, and transfer it out the rear of the machine. Thus, in a full-fan configuration,data server 10 includes a total of ten fans: threecard cage fans 41 and three power supply fans 66 at the front of the machine, and four diskdrive rack fans 58 at the rear of the machine. Of course, other numbers and arrangements of fans also are contemplated.
Althoughperipheral rack 40 is generally convection cooled and includes a number of vent holes indoor 75, for example, which allow some minimal airflow to escape out the front of the machine due to back pressure within the machine, the primary airflow generated by the up to ten fans of the data server is front-to-back.
Diskdrive rack fans 58 preferably are hot-swappable and/or redundant. Thus, for example, although twofans 58 are provided for eachdisk drive rack 50, 55, each rack needs at a minimum only one of the two fans to cool properly. Further, a malfunctioning fan can be changed without shutting off the power todata server 10. Each fan preferably includes a dead-fan sensor that is continuously monitored bysystem management unit 70. Upon detecting failure one offans 58, an appropriate alarm is sounded and/or an operator is otherwise notified.
Eachcard cage fan 41 preferably services approximately one-third ofcard cage 47. These fans generally are not redundant, according to one embodiment, and therefore each preferably includes a tachometer that records r.p.m.'s and, upon deviation of fan speed from a predetermined norm, signalssystem management unit 70 that failure is imminent.System management unit 70 can, in addition to signaling an operator in the event of fan failure, power-down the machine once one ormore fans 41 have been functioning inadequately for a given period of time.Fans 41 preferably are hot-swappable and, of course, can be chosen and positioned to provide redundancy if so desired.
Preferably,system management unit 70 continuously monitors all fans ofdata server 10, except the power supply fans according to a preferred embodiment, by tachometers, dead-fan signals or other monitoring devices.Server 10 also preferably includes a plurality of temperature sensors that are controlled and continuously monitored by system software executing insystem management unit 70. Two temperature sensors preferably are located withincard cage 47, one of which reads incoming air temperature, i.e. ambient temperature, and one of which reads exiting air temperature. Two additional temperature sensors preferably also are provided, at the back ofdata server 10 according to a preferred embodiment, one of which is immediately belowcard cage 47 and the other of which is at the top ofdata server 10.System management unit 70 can be programmed to initiate a variety of actions based on the temperature sensor outputs, for example powering down the machine, sending warnings, etc. The ambient air sensor, in particular, may also serve as a fire sensing device, for example.
As discussed previously, preferred hinge arrangements are provided to allow the top and front doors ofdata servers 10 to be swung open without interfering with an immediately adjacent server or other object. Additionally, the hinge arrangements preferably are hidden from view when the top and front doors are in their closed positions, to reduce the likelihood of tampering. FIGS. 4A-4B illustrate upper and lower front door hinges 120, 130 and top door hinges 135, to achieve these purposes.
As shown in FIG. 4A, lowerfront door hinge 120 includeshinge plate 123, which preferably is bolted or otherwise attached tohousing frame 15. Attached to hingeplate 123 and preferably integral as one-piece therewith ishinge plate 124, which includes a stepped,cutout portion 125.Front door 20 includes acorresponding protrusion block 138, which fits intocutout portion 125 underneathhinge plate 124 whenfront door 20 is in a closed position. The engagement between the top side ofprotrusion 138 and the lower side ofhinge plate 124 atcutout 125 prevents vertical removal offront door 20 when it is in its closed position. Asdoor 20 is moved toward its open position,protrusion 138 swings out from underhinge plate 124 to allowfront door 20 to be lifted vertically offhinge 120 and completely removed fromhousing 15, if so desired.Hinge 130 thus enhances the overall security ofdata server 10, becausefront door 20 cannot be removed without being unlocked and opened, thereby triggering the various detection devices described previously. It should also be understood that, althoughhinges 130 are only shown onfront door 20, it is also contemplated that similar hinges 130 could be provided forrear door 35.
As shown in FIG. 4B, uppermostfront door hinge 130 includes hinge plates 133, 134, which preferably are integrally connected to form a one-piece structure. Hinge plate 134 supportsfront door 20 at its upper corner, preferably in a manner similar to that described forlower hinge 120.
Eachtop door hinge 135 includeshinge plates 140, 145, which are bolted or otherwise affixed totop door 30 andhousing frame 15, respectively.Hinge plates 140, 145 are pivotally connected byhinge pin 150, which includes anupturned end portion 155 to provide a gripping surface for easy removal ofpin 150 and thereforetop door 30. Top door hinges 135 allowtop door 30 to open without interfering with an adjacent data server or other object, while keeping hinges 135 hidden from view whentop door 30 is closed.
Becausedata server 10 according to the invention is considerably more compact than its predecessors, it is considerably shorter and therefore more likely to receive beverage cups and other objects on the outside surface oftop door 30. To minimize the potential for spilled liquid to enterdata server 10 and damage valuable internal components, therefore,data server 10 preferably includes a guttering system supported byhousing frame 15 just underneathtop door 30. The guttering system preferably is in the form of a square-shaped ridge formed by four separate or integral metal pieces running around the top offrame 15. Left- and right-side gutter ridges 157 (FIG. 4B), 158 (FIG. 6) form two sides of the square-shaped ridge, and similar gutter ridges (not shown) extend along the forward and rear sides offrame 15 to complete the square. Additionally, the guttering system aids in electro-magnetic interference (EMI) sealing of at least the lid area ofdata server 10.
According to a preferred embodiment, the data server components and internal wiring ofdata server 10 are arranged so that almost no wires are visible through the front, top or rear doors. All or substantially all of the power-associated components, such as power supplies 65 are located on the right-hand side of the machine, and the corresponding wiring runs behind at least one cover plate on the right-hand side of the machine. Similarly, all or substantially all of the I/O-associated component wiring is positioned to run behind at least one cover plate on the left-hand side of the machine. Additionally, approximately 80-90% of all the wiring is positioned in the very bottom portion of the machine, underneathbottom rack 60. By hiding all but approximately 2% of the machine wiring, a very neat and clean appearance is presented to the technician, unlike many prior art data servers. Additionally, the non-exposed wiring ofdata server 10 is less likely to suffer damage than the exposed and tangled wiring of many prior art servers.
Data server 10 according to the invention preferably is fully wired for its maximum configuration, i.e., for its maximum number of components, so that the wiring need not be changed or upgraded upon upgrading the machine.
Data server 10 according to the invention also preferably includes I/O connection arrangement 160 (FIG. 9A) at the back ofserver 10.Arrangement 160 includespatch panels 165 attached to the rear side of eachdisk drive rack 50, 55, and includes correspondingside patch panels 170 at the side ofhousing frame 15, extending substantially perpendicular to diskdrive patch panels 165. Eachpatch panel 165, 170 preferably includes fourconnectors 166, for attachment to ribbon cable or other signal-relaying material.
As shown in FIG. 9, for example,data server 10 also includes abulkhead 175, for connecting external wires todata server 10, for example.Bulkhead 175 preferably includes external I/O, with eight channels preferably available, serial ports, with four being preferable, and UPS support connections. Thus,bulkhead 175 enables external connection even withrear door 35 closed.
A number of I/O channels, for example eight, may be connected internally to cardcage 47. Half of the channels, for example four, are coupled withbulkhead 175 for connection to external devices. The other half drop tointernal patch panel 170. According to this example, two channels drop to the level of eachdisk drive rack 50, 55. There is also a corresponding adjacent drop to each of these on a patch panel that connects to bulkhead 175. Preferably by use of patch cabling, an I/O channel or channels can be connected to either or both disk drive racks 50, 55, and/orbulkhead 175, in various arrangements to achieve results desired by the operator ofdata server 10. At least 28 practical combinations and/or arrangements exist, according to a preferred embodiment.
Eachdisk drive rack 50, 55 is broken logically into halves, and/or has two I/O channels, so that up to five, half-height devices (e.g. 1.75 inches thick by 5.75 inches wide) can be connected on each channel. The two channels inside the rack can be "patched" together on the outside of the rack to put ten devices on the same channel. All power and fan signal connections preferably are made by one panel-mounted connector on the back of the rack. The fans are designed such that left and right fan signals can not be mixed or exchanged. As shown in FIG. 9, for example,data server 10 also includes abulkhead 175, for connecting external wires todata server 10, for example.Bulkhead 175 preferably includes external I/O, with eight channels preferably available, serial ports, with four being preferable, and UPS support connections. Thus,bulkhead 175 enables external connection even withrear door 35 closed.
As shown in FIG. 7,data server 10 according to the invention preferably includes alternating currentcord retention device 200, for the cord preferably provided with the machine.Device 200 preferably is fixed to frame 15 with a swivel half that prevents unintentional removal of the plug.
Data server 10 according to the invention also preferably includes shock-absorbing and/or movement-dampening devices (not shown), such as struts, for example, for at least front andtop doors 20, 30. According to one embodiment, a pneumatic piston-cylinder assembly extends betweenbracket 180 ontop door 30 and a lower bracket (not shown) attached to the left side ofhousing frame 15, for example directly belowbracket 180 as viewed in FIG. 4, immediatelyadjacent gutter ridge 157. Similarly, a pneumatic piston-cylinder assembly preferably extends between a bracket on the inside offront door 20, centered on the door just belowperipheral access door 75, horizontally over to a similar bracket at the left-hand side offrame 15. Such devices prevent damage due to slamming and/or overextendingdoors 20, 30, and hold the doors in open or partially open positions on their respective hinges.
FIGS. 10-17 illustrateracks 40, 45, 50, 55 and 60 in greater detail. FIGS. 10-11 are assembled and exploded views, respectively, ofperipheral rack 40. According to the illustrated embodiment, disk drives 241,floppy drive 243 and CD ROM drives 245 preferably are housed withinperipherals cage 247, which includes front andrear plates 242, 249. The peripheral devices preferably slide intocage 247 from the front.Floppy drive 243 additionally can slide in from the back on rails, for example, for ease of installation and removal.Cage 247 andrear plate 249 include a plurality ofvents 253, for promoting better air flow throughperipheral rack 40.Cage 247 is supported withinhousing frame 15 by mountingplates 244, which linearly move along slides 42 in a manner previously described. Of course,cage 247 and front and/orrear plates 242, 249 can be configured to accommodate any desired number and types ofperipheral storage devices 241, 243, 245.
FIGS. 12-13 are assembled and exploded views, respectively, ofdisk drive rack 50, according to a preferred embodiment. Individual hard disk drives 57 are housed within drive cage 56, which includes an upper opening covered by access plate 59 and rear openings for accommodatingdisk drive fans 58.
FIGS. 14 and 15 are assembled and exploded views, respectively, ofpower supply rack 60. Individualpower supply units 65 andsystem management unit 70 are housed withincage 261, which is covered byside plates 262, top andbottom plates 263, 264, andrear plate 265, which preferably is a self-aligning hot-plug connector plate.Rack 60 also includescover plate 270, for covering and protectingsystem management unit 70.
FIGS. 16-17 are front and rear perspective views, respectively, ofcard cage rack 45.Card cage rack 45 includeslid 46 hinged at 49, as described previously.Card cage fans 41 push air throughcard cage 47 to exit atvents 255 inrear plate 256 andlid 46.Rear plate 256 also includesslots 257, for allowing connection to inserted components, for example daughter cards.
While the invention has been described with reference to specific embodiments, the description is illustrative and is not to be construed as limiting the scope of the invention. For example, a variety of materials can be used for the various parts of the invention, including the skins, frame and racks. Further, a wide variety of data server components are usable, not just those illustrated and described. Various other modifications and changes may occur to those skilled in the art without departing from the spirit and the scope of the invention as defined in the following claims.

Claims (31)

What is claimed is:
1. A rack-mount data server comprising a single computer unit, the server comprising:
a housing;
a plurality of data server components supported by the housing, the components comprising at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and a power supply comprising at least one power supply element, the plurality of data server components being contained within the single computer unit and being powered by the power supply; and
a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating the at least one peripheral storage device, a second rack accommodating the logic chassis, and a third rack accommodating the power supply, the housing supporting the second rack underneath the first rack as the second topmost rack, the at least one peripheral storage device of the data server being accommodated only by the first topmost rack, and the logic chassis of the data server being accommodated only by the second topmost rack, wherein the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing to allow access to the logic chassis from the top of the data server, further wherein the second and third racks are supported by the housing to move from respective housed positions within the housing to respective extended positions at least partially outside the housing.
2. The data server of claim 1, wherein the at least one disk drive comprises a plurality of plug-and-play disk drives.
3. The data server of claim 1, wherein the housing includes a plurality of slides, the first rack being mounted on the slides to linearly move to the extended position.
4. The data server of claim 1, wherein the logic chassis includes a cover, the cover being movable to an open position when the first rack is moved to the extended position.
5. The data server of claim 4, wherein the cover is pivotally mounted to the logic chassis to swing into a space occupied by the first rack in its housed position.
6. The data server of claim 1, wherein the at least one peripheral storage device is selected from the group comprising floppy disk drives, CD ROM drives, boot drives, and tape drives.
7. The data server of claim 1, wherein the data server housing further comprises a front door covering a front side of the data server; further wherein the front door comprises an openable peripheral access door separate from the front door to allow access to the first rack accommodating the at least one peripheral storage device.
8. The data server of claim 7, wherein the front door is pivoted with respect to the remainder of the housing by at least one internal hinge to prevent contact of the front door with an object adjacent a lateral side of the data server.
9. The data server of claim 1, further comprising an openable front door, an openable back door and an openable top door to allow access to all of the data server components from the front, back and top of the data server.
10. The data server of claim 1, further comprising:
a front door positioned to cover a front side of the data server when the front door is in a closed position and to allow access to the plurality of racks from the front side of the data server when the front door is in an open position; and
a top door positioned to cover a top side of the housing when the top door is in a closed position and to allow access to the racks from the top side of the housing when the top door is in an open position, the top door and the front door being interlockable with each other such that when the front door and the top door are in their closed positions, the front door locks the top door in its closed position.
11. The data server of claim 10, further comprising:
a peripheral access door disposed within the front door of the data server to allow access to the first topmost rack; and
at least one detection device coupled with the peripheral access door and with a system management unit to signal the system management unit upon attempted access to the first topmost rack via the peripheral access door.
12. The data server of claim 10, wherein the front door of the data server comprises a lip and the top door of the data server comprises an abutting surface, the lip overlapping the abutting surface when the front door and top door are in their closed positions to prevent the top door from opening.
13. The data server of claim 10, further comprising:
a system management unit as one of the plurality of data server components; and
at least one detection device, coupled with one of the top door and the front door and with the system management unit, to signal the system management unit upon attempted access to data server components from outside the data server via said one door.
14. The data server of claim 13, wherein said one door includes a lock, the at least one detection device signaling the system management unit when the lock is unlocked.
15. The data server of claim 13, wherein the at least one detection device signals the system management unit when said one door is opened.
16. The data server of claim 13, wherein the at least one detection device comprises a microswitch.
17. The data server of claim 1, wherein the logic chassis comprises an openable logic chassis cover disposed within the housing; the data server further comprising a detection device coupled with the logic chassis cover and with a system management unit to signal the system management unit upon attempted access to the logic chassis via the logic chassis cover.
18. The data server of claim 1, wherein the logic chassis comprises a plurality of printed circuit modules that are inaccessible from the back of the data server.
19. The data server of claim 1, further comprising:
a front door coupled with the housing to cover a front side of the housing when the front door is in a closed position and to allow access to at least one of the data server components from the front side of the housing when the front door is in an open position, the front door including a mesh structure on at least a portion of an exterior surface to allow airflow through the front door; and
a plurality of fans positioned adjacent the front side of the housing to move air from outside the front of the housing, through the mesh structure of the front door, toward the back side of the housing.
20. The data server of claim 19, wherein the data server components further comprise a system management unit and wherein at least one of the plurality of fans comprises a fan speed sensor coupled with the system management unit to signal the system management unit upon deviation of fan speed from a predetermined level.
21. The data server of claim 19, wherein the mesh structure extends substantially the entire length of the front door to allow airflow therethrough.
22. The data server of claim 1, further comprising a plurality of fans positioned adjacent a back side of the housing to move air to the back side of the housing.
23. The data server of claim 1, further comprising:
a front door positioned to cover the front side of the housing when the front door is in a closed position and to allow access to the plurality of disk drives from the front side of the housing when the front door is in an open position; and
at least one hinge coupled with the front door and with the housing to cause the front door to open without interfering with an immediately adjacent data server.
24. The data server of claim 23, wherein the at least one hinge defines a substantially vertical pivot axis passing through an edge of the front door.
25. The data server of claim 23, wherein the at least one hinge comprises a stepped section and the front door comprises a protrusion, the protrusion being located within the stepped section of the at least one hinge to prevent vertical removal of the front door when the front door is in its closed position, the protrusion being removed from the stepped section of the at least one hinge to allow vertical removal of the front door when the front door is in its open position.
26. The data server of claim 1, wherein the housing further comprises a top side; further wherein the data server comprises:
a top door positioned to cover the top side of the housing when the top door is in a closed position and to allow access to at least one of the data server components from the top side of the housing when the top door is in an open position; and
at least one hinge coupled with the top door and with the housing to cause the top door to open without interfering with an immediately adjacent data server.
27. A rack-mount data server, comprising:
a housing;
a plurality of data server components supported by the housing, the components comprising at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and at least one power supply;
a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating the at least one peripheral storage device and a second rack accommodating the logic chassis, the housing supporting the second rack underneath the first rack as the second topmost rack; and
a front door covering a front side of the data server, the front door comprising an openable peripheral access door separate from and within the front door to allow access to the first rack accommodating the at least one peripheral storage device;
wherein the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing, further wherein the second rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing.
28. The data server of claim 27, wherein the openable peripheral access door is constructed to allow access only to the first rack accommodating the at least one peripheral device.
29. A rack-mount data server, comprising:
a housing;
a plurality of data server components supported by the housing, the components comprising at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and at least one power supply; and
a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating the at least one peripheral storage device and a second rack accommodating the logic chassis, the housing supporting the second rack underneath the first rack as the second topmost rack;
wherein the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing, to allow access to the logic chassis from the top of the data server;
the data server further comprising a logic chassis cover, the cover being movable to an open position when the first rack is moved to the extended position, the cover being pivotally mounted with respect to the logic chassis to swing into a space occupied by the first rack in its housed position.
30. A rack-mount data server, comprising:
a housing;
a plurality of data server components supported by the housing, the components comprising at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and at least one power supply; and
a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating at least one of the data server components and a second rack accommodating at least one of the data server components, the housing supporting the second rack underneath the first rack as the second topmost rack;
wherein the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing, to allow access to the at least one data server component accommodated by the second rack from the top of the data server;
the data server further comprising a second rack cover, the cover being movable to an open position when the first rack is moved to the extended position, the cover being pivotally mounted with respect to the second rack to swing into a space occupied by the first rack in its housed position.
31. A rack-mount data server comprising a single computer unit, the server comprising:
a housing;
a plurality of data server components supported by the housing, the components comprising at least one peripheral storage device, a logic chassis for the data server, at least one disk drive on which the data server stores files, and a power supply comprising at least one power supply element, the plurality of data server components being contained within the single computer unit and being powered by the power supply; and
a plurality of racks coupled with the housing to accommodate the data server components, the racks including a first topmost rack accommodating the at least one peripheral storage device, a second rack accommodating the logic chassis, and a third rack accommodating the power supply, the housing supporting the second rack underneath the first rack, the first topmost rack accommodating only the at least one peripheral storage device of the data server, and the second rack accommodating only the logic chassis of the data server, wherein the first rack is supported by the housing to move from a housed position within the housing to an extended position at least partially outside the housing to allow access to the logic chassis from the top of the data server, further wherein the second and third racks are supported by the housing to move from respective housed positions within the housing to respective extended positions at least partially outside the housing.
US08/518,0031995-08-221995-08-22Packaging architecture for a data serverExpired - Fee RelatedUS5684671A (en)

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Cited By (172)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
USD409164S (en)*1998-04-131999-05-04Dsc Telecom L.P.Enclosure for electronic components
US5959841A (en)*1996-12-311999-09-28Compaq Computer Corp.Modular computer chassis with extractor device mounted to the housing
US5987554A (en)*1997-05-131999-11-16Micron Electronics, Inc.Method of controlling the transfer of information across an interface between two buses
US6016252A (en)*1997-06-302000-01-18Emc CorporationCable management system
US6025989A (en)*1998-04-212000-02-15International Business Machines CorporationModular node assembly for rack mounted multiprocessor computer
US6035420A (en)*1997-10-012000-03-07Micron Electronics, Inc.Method of performing an extensive diagnostic test in conjunction with a bios test routine
US6034868A (en)*1997-09-152000-03-07Kingston Technology CompanyExpansion chassis having a removable wiring bracket and external computer memory
US6040982A (en)*1997-10-162000-03-21Dell Usa, L.P.Electronic system implementing redundant and nonredundant power supply configurations
US6038892A (en)*1998-01-272000-03-21Dell Usa, L.P.Combination keylock device and securing device
US6050658A (en)*1998-02-232000-04-18Richmount Computer LimitedCarrier for an electronic device
US6065053A (en)1997-10-012000-05-16Micron Electronics, Inc.System for resetting a server
US6073255A (en)1997-05-132000-06-06Micron Electronics, Inc.Method of reading system log
US6088816A (en)1997-10-012000-07-11Micron Electronics, Inc.Method of displaying system status
US6088224A (en)*1997-12-032000-07-11Emc CorporationCabinet for storing a plurality of processing unit modules
WO2000049487A1 (en)*1999-02-192000-08-24General Dynamics Information Systems, Inc.Data storage housing
US6109710A (en)*1998-02-262000-08-29Toshiba America Information Systems, Inc.Side door for computer chassis
US6122758A (en)1997-05-132000-09-19Micron Electronics, Inc.System for mapping environmental resources to memory for program access
US6122746A (en)1997-05-132000-09-19Micron Electronics, Inc.System for powering up and powering down a server
US6134673A (en)1997-05-132000-10-17Micron Electronics, Inc.Method for clustering software applications
US6134668A (en)1997-05-132000-10-17Micron Electronics, Inc.Method of selective independent powering of portion of computer system through remote interface from remote interface power supply
US6138250A (en)1997-05-132000-10-24Micron Electronics, Inc.System for reading system log
US6138179A (en)1997-10-012000-10-24Micron Electronics, Inc.System for automatically partitioning and formatting a primary hard disk for installing software in which selection of extended partition size is not related to size of hard disk
US6145098A (en)1997-05-132000-11-07Micron Electronics, Inc.System for displaying system status
US6148355A (en)1997-05-132000-11-14Micron Electronics, Inc.Configuration management method for hot adding and hot replacing devices
US6154835A (en)1997-10-012000-11-28Micron Electronics, Inc.Method for automatically configuring and formatting a computer system and installing software
US6154361A (en)*1998-10-022000-11-28International Business Machines CorporationDisk-drive chassis for reducing transmission of vibrations between disk-drive units of a disk-drive array
US6157534A (en)*1997-06-302000-12-05Emc CorporationBackplane having strip transmission line ethernet bus
US6163849A (en)1997-05-132000-12-19Micron Electronics, Inc.Method of powering up or powering down a server to a maintenance state
US6163825A (en)1997-05-132000-12-19Micron Electronics, Inc.Method for hot adding a network adapter by identifying and executing the adapter driver based upon the logical board number of the network adapter
US6163853A (en)1997-05-132000-12-19Micron Electronics, Inc.Method for communicating a software-generated pulse waveform between two servers in a network
US6170028B1 (en)1997-05-132001-01-02Micron Electronics, Inc.Method for hot swapping a programmable network adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6170067B1 (en)1997-05-132001-01-02Micron Technology, Inc.System for automatically reporting a system failure in a server
US6173346B1 (en)1997-05-132001-01-09Micron Electronics, Inc.Method for hot swapping a programmable storage adapter using a programmable processor for selectively enabling or disabling power to adapter slot in response to respective request signals
US6175490B1 (en)*1997-10-012001-01-16Micron Electronics, Inc.Fault tolerant computer system
US6181549B1 (en)*1997-06-242001-01-30Dell Products, L.P.Chassis retaining system for an electronics rack
US6179486B1 (en)1997-05-132001-01-30Micron Electronics, Inc.Method for hot add of a mass storage adapter on a system including a dynamically loaded adapter driver
US6182180B1 (en)1997-05-132001-01-30Micron Electronics, Inc.Apparatus for interfacing buses
US6188973B1 (en)*1996-11-152001-02-13Compaq Computer CorporationAutomatic mapping, monitoring, and control of computer room components
US6189109B1 (en)1997-05-132001-02-13Micron Electronics, Inc.Method of remote access and control of environmental conditions
US6192434B1 (en)1997-05-132001-02-20Micron Electronics, IncSystem for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6195717B1 (en)1997-05-132001-02-27Micron Electronics, Inc.Method of expanding bus loading capacity
US6202111B1 (en)1997-05-132001-03-13Micron Electronics, Inc.Method for the hot add of a network adapter on a system including a statically loaded adapter driver
US6202160B1 (en)1997-05-132001-03-13Micron Electronics, Inc.System for independent powering of a computer system
US6212585B1 (en)1997-10-012001-04-03Micron Electronics, Inc.Method of automatically configuring a server after hot add of a device
US6219734B1 (en)1997-05-132001-04-17Micron Electronics, Inc.Method for the hot add of a mass storage adapter on a system including a statically loaded adapter driver
US6223234B1 (en)1998-07-172001-04-24Micron Electronics, Inc.Apparatus for the hot swap and add of input/output platforms and devices
US6243773B1 (en)1997-05-132001-06-05Micron Electronics, Inc.Configuration management system for hot adding and hot replacing devices
US6247080B1 (en)1997-05-132001-06-12Micron Electronics, Inc.Method for the hot add of devices
US6249834B1 (en)1997-05-132001-06-19Micron Technology, Inc.System for expanding PCI bus loading capacity
US6249885B1 (en)1997-05-132001-06-19Karl S. JohnsonMethod for managing environmental conditions of a distributed processor system
US6247898B1 (en)1997-05-132001-06-19Micron Electronics, Inc.Computer fan speed control system
US6249828B1 (en)1997-05-132001-06-19Micron Electronics, Inc.Method for the hot swap of a mass storage adapter on a system including a statically loaded adapter driver
US6253334B1 (en)1997-05-132001-06-26Micron Electronics, Inc.Three bus server architecture with a legacy PCI bus and mirrored I/O PCI buses
US6263387B1 (en)1997-10-012001-07-17Micron Electronics, Inc.System for automatically configuring a server after hot add of a device
US6269417B1 (en)1997-05-132001-07-31Micron Technology, Inc.Method for determining and displaying the physical slot number of an expansion bus device
US6282673B1 (en)1997-05-132001-08-28Micron Technology, Inc.Method of recording information system events
US6292905B1 (en)1997-05-132001-09-18Micron Technology, Inc.Method for providing a fault tolerant network using distributed server processes to remap clustered network resources to other servers during server failure
US6301095B1 (en)*1999-12-232001-10-093Com CorporationSystem and method of distributing power to a plurality of electronic modules housed within an electronics cabinet
US6304929B1 (en)1997-05-132001-10-16Micron Electronics, Inc.Method for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6324608B1 (en)1997-05-132001-11-27Micron ElectronicsMethod for hot swapping of network components
US6330690B1 (en)1997-05-132001-12-11Micron Electronics, Inc.Method of resetting a server
US6331933B1 (en)*1999-10-082001-12-18Sun Microsystems, Inc.Power sub-frame for a system unit
US6349029B1 (en)1999-10-202002-02-19Micronpc, LlcComputer component security apparatus and method
USD454111S1 (en)2001-04-052002-03-05Unipower Northeast Technical CenterHigh density, hot pluggable power supply
US6359775B1 (en)1999-08-112002-03-19Micron Technology, Inc.Accessible desktop computer
US6363497B1 (en)1997-05-132002-03-26Micron Technology, Inc.System for clustering software applications
EP1175136A3 (en)*2000-07-192002-05-15Internet Research Institute, Inc.A cartridge type server unit and a cabinet to accommodate multiple said server units
US6418492B1 (en)1997-05-132002-07-09Micron ElectronicsMethod for computer implemented hot-swap and hot-add
US20020124114A1 (en)*2001-03-052002-09-05Bottom David A.Modular server architecture with ethernet routed across a backplane utilizing an integrated ethernet switch module
US6452789B1 (en)*2000-04-292002-09-17Hewlett-Packard CompanyPackaging architecture for 32 processor server
US20020144044A1 (en)*2001-03-292002-10-03Moon William G.Removable disk storage array emulating tape library having backup and archive capability
US6462670B1 (en)*2000-10-182002-10-08Compaq Computer CorporationServer system having front and rear identification
US6480398B1 (en)2000-01-052002-11-12Compaq Computer CorporationCPU easy access panels
US6499073B1 (en)1997-05-132002-12-24Micron Electronics, Inc.System using programmable processor for selectively enabling or disabling power to adapter in response to respective request signals
US6525926B1 (en)*2000-07-112003-02-25Racklogic Technologies, Inc.Multinode high density computing apparatus
US6525930B1 (en)*1999-10-082003-02-25Sun Microsystems, Inc.Mounting media drives in a computer system on a carriage
US6526333B1 (en)1997-05-132003-02-25Micron Technology, Inc.Computer fan speed control system method
US20030052580A1 (en)*2001-09-192003-03-20Dobler Karl J.Snap-on slide and rail assembly and method of assembling same
US6549397B1 (en)*2000-05-262003-04-15Hewlett-Packard CompanyTower computer with low center of gravity
US6580604B1 (en)*1997-12-232003-06-17Dell U.S.A., L.P.Peripheral device bay with adapter plates
WO2003050666A1 (en)*2001-12-072003-06-19Envirosense, LlcPedestal enclosure with improved accessibility to components and improved ingress protection
US20030223193A1 (en)*2002-05-312003-12-04Racksaver, Inc.Method and apparatus for rack mounting computer components
US20030224645A1 (en)*2002-05-312003-12-04Racksaver, Inc.Rack mountable computer component power distribution unit and method
US20030223199A1 (en)*2002-05-312003-12-04Racksaver, Inc.Rack mountable computer component and method of making same
US20040057216A1 (en)*2002-09-252004-03-25Smith John V.Electronic component rack assembly and method
US20040070936A1 (en)*1999-10-262004-04-15Giovanni CoglitoreHigh density computer equipment storage system
US6742068B2 (en)*1997-06-302004-05-25Emc CorporationData server with hot replaceable processing unit modules
US6769551B2 (en)2002-07-262004-08-03Dell Products L.P.System and method for utilizing non-dedicated rack space
USD495699S1 (en)2002-10-032004-09-07Nec CorporationMemory control equipment for computers
US20040183409A1 (en)*2001-01-232004-09-23Cooper Technologies CompanyElectrical equipment enclosure
US20040182798A1 (en)*2003-03-212004-09-23Dell Products L.P.Tool-less cable management attachment bracket and method of use
US20040190229A1 (en)*2003-01-102004-09-30Caci J. ClaudeSelf-sustaining environmental control unit
US6801428B2 (en)2002-05-312004-10-05Racksaver, Inc.Rack mountable computer component fan cooling arrangement and method
US20040223294A1 (en)*2003-04-252004-11-11Yasuhide KitaokaData recording device and memory cartridge of data recording device
GB2402814A (en)*2003-06-112004-12-15Hewlett Packard Development CoMulti-computer system
US20050052850A1 (en)*2003-09-092005-03-10Quantum CorporationWorkshelf for a computer rack
US20050068723A1 (en)*2003-09-262005-03-31Craig SquillanteComputer case having a sliding door and method therefor
US20050067358A1 (en)*2003-09-302005-03-31Dell Products L.P.Cable management flip tray assembly
US20050071689A1 (en)*2003-09-262005-03-31Continuous Computing CorporationIndependently powered slots architecture and method
US6902069B2 (en)2002-10-232005-06-07Dell Products L.P.System and method for rack cable management
WO2004095256A3 (en)*2003-04-112005-07-07Raytheon CoSystem and method for transferring large amounts of stored data
US20050162836A1 (en)*2004-01-232005-07-28James BriggsModular UPS
US20050165998A1 (en)*2002-02-132005-07-28Quantum CorporationUse of the universal serial bus as an internal architecture within IDE disk array
US20050169127A1 (en)*2004-01-292005-08-04Tomonori SoedaDisk array device and disk array device cable support method
US20050219811A1 (en)*2004-03-312005-10-06Giovanni CoglitoreComputer rack cooling system
US20050246137A1 (en)*2002-04-242005-11-03Ascend Geo LlcData offload and charging systems and methods
US6962397B2 (en)2001-09-192005-11-08Hewlett-Packard Development Company, L.P.Expandable slide and rail assembly for a rack
US20050289274A1 (en)*2004-06-232005-12-29National Instruments CorporationCompact modular embedded device
US6988626B2 (en)1998-07-312006-01-24Varghese Paily TComputer component rack mounting arrangement
US7012808B2 (en)2002-12-202006-03-14Hewlett-Packard Development Company, L.P.Multi-configurable telecommunications rack mounting system and method incorporating same
US7137512B2 (en)2003-02-192006-11-21Hewlett-Packard Development Company, L.P.Removable rails for use on racks
US7165120B1 (en)*2000-10-112007-01-16Sun Microsystems, Inc.Server node with interated networking capabilities
WO2006007467A3 (en)*2004-07-012007-03-01Ario Data Networks IncMulti-depth drive enclosure
US20070283710A1 (en)*2006-06-122007-12-13Sun Microsystems, Inc.Method and system for cooling electronic equipment
US20080144277A1 (en)*2002-06-142008-06-19Hitachi, Ltd.Disk array device
US20080164789A1 (en)*2003-03-212008-07-10Dell Products L.P.Tool-less Cable Management Attachment Bracket And Method Of Use
US20080232055A1 (en)*2007-03-202008-09-25Kevin ChenCabinet for Storing Rack Mount Computer
US20080290051A1 (en)*2007-05-172008-11-27Manzi Steven FStandalone open frame
US20080304228A1 (en)*2007-06-062008-12-11Dell Products L.P.Multi-Purpose Structural Support I/O Member For A Server
US7552364B2 (en)1997-05-132009-06-23Micron Technology, Inc.Diagnostic and managing distributed processor system
WO2009124007A2 (en)2008-03-312009-10-08Telezygology Inc.Improvements in computer room security
US20090295579A1 (en)*2008-05-292009-12-03Commscope, Inc. Of North CarolinaOptical fiber systems and methods for monitoring remote door access
US20100100330A1 (en)*2002-04-242010-04-22Ascend Geo, LlcMethods and systems for acquiring and processing seismic data
US20100270897A1 (en)*2009-04-232010-10-28Lin Te-ChangIndustrial computer chassis structure with power source disposed centrally
US20100306544A1 (en)*2009-06-022010-12-02Microsoft CorporationSecure computing environment in a transportable container
US7864523B2 (en)*2008-03-282011-01-04Fujitsu LimitedCooling device for accommodated printed circuit board in a chassis
US7898799B2 (en)2008-04-012011-03-01Cray Inc.Airflow management apparatus for computer cabinets and associated methods
US7903403B2 (en)*2008-10-172011-03-08Cray Inc.Airflow intake systems and associated methods for use with computer cabinets
US20110261521A1 (en)*2010-04-222011-10-27Wentai LoComputer case with adjustable hard disk drive and interface card accommodation space
US20110266229A1 (en)*2010-04-302011-11-03M&A Technology, Inc.Stackable modular personal computer array
US8081459B2 (en)2008-10-172011-12-20Cray Inc.Air conditioning systems for computer systems and associated methods
US20120014062A1 (en)*2010-07-162012-01-19Rockwell Automation Technologies, Inc.Cooling duct attachment and sealing for a motor drive
US20120014154A1 (en)*2010-07-162012-01-19Rockwell Automation Technologies, Inc.Motor drive cooling duct system and method
US20120039035A1 (en)*2010-08-102012-02-16Hon Hai Precision Industry Co., Ltd.Server system and heat dissipation device thereof
CN1825464B (en)*2005-02-222012-04-25株式会社日立制作所Disk device
US8170724B2 (en)2008-02-112012-05-01Cray Inc.Systems and associated methods for controllably cooling computer components
US20120106090A1 (en)*2010-11-022012-05-03Hon Hai Precision Industry Co., Ltd.Electronic device access door
US8335081B2 (en)2010-07-162012-12-18Rockwell Automation Technologies, Inc.Heat sink cooling arrangement for multiple power electronic circuits
US8472181B2 (en)2010-04-202013-06-25Cray Inc.Computer cabinets having progressive air velocity cooling systems and associated methods of manufacture and use
KR101356088B1 (en)*2011-01-252014-01-28광저우 홀드스톰 사이언스 앤 테크놀로지 컴퍼니 리미티드Modular energy-efficient and safety network cabinet
US20140063739A1 (en)*2012-08-302014-03-06Delta Electronics, Inc.Heat-dissipating system for high-power cabinet and static var compensation system
US8820395B2 (en)2007-12-172014-09-02Cray Inc.Cooling systems and heat exchangers for cooling computer components
US8965150B2 (en)2008-05-292015-02-24Commscope, Inc. Of North CarolinaOptical switch assembly for detecting movement
US20150070829A1 (en)*2013-09-112015-03-12Hon Hai Precision Industry Co., Ltd.Server with supporting bracket
US20150076975A1 (en)*2012-05-232015-03-19Huawei Technologies Co., Ltd.Container data center
US20150098168A1 (en)*2013-10-092015-04-09Hon Hai Precision Industry Co., Ltd.Server cabinet
AU2014280950B2 (en)*2008-03-312016-04-28Telezygology IncImprovements in Computer Room Security
US9377808B1 (en)*2014-02-102016-06-28American Megatrends, Inc.Modular computer enclosure with bracket system and rotatable plates
US9426932B2 (en)2013-03-132016-08-23Silicon Graphics International Corp.Server with heat pipe cooling
US9496200B2 (en)2011-07-272016-11-15Coolit Systems, Inc.Modular heat-transfer systems
US20170023988A1 (en)*2015-07-222017-01-26Celestica Technology Consultancy (Shanghai) Co. Ltd.Electronic apparatus
USD780749S1 (en)*2013-10-222017-03-07Western Digital Technologies, Inc.Storage device
US9612920B2 (en)2013-03-152017-04-04Silicon Graphics International Corp.Hierarchical system manager rollback
US9741229B2 (en)2013-05-132017-08-22CommScope Connectivity Belgium BVBAOptical sensor, optical sensor assembly and monitoring device
US9943014B2 (en)2013-03-152018-04-10Coolit Systems, Inc.Manifolded heat exchangers and related systems
US10034546B2 (en)2013-09-252018-07-31CommScope Connectivity Belgium BVBADevice and method for mounting a sensor and for sealing a cabinet
USD837211S1 (en)2014-10-292019-01-01Western Digital Technologies, Inc.Storage device
US10169965B1 (en)*2017-09-282019-01-01Amazon Technologies, Inc.Physical mesh barrier for protection of server rack
US10365667B2 (en)2011-08-112019-07-30Coolit Systems, Inc.Flow-path controllers and related systems
US10364809B2 (en)2013-03-152019-07-30Coolit Systems, Inc.Sensors, multiplexed communication techniques, and related systems
US10691842B1 (en)2017-09-282020-06-23Amazon Technologies, Inc.Electrically detectable separable bar arrangement for protection of server rack
CN111432583A (en)*2020-03-242020-07-17贵州电网有限责任公司MPPT controller convenient to overhaul
CN112462888A (en)*2020-12-182021-03-09刘萍Computer cabinet
US11395443B2 (en)2020-05-112022-07-19Coolit Systems, Inc.Liquid pumping units, and related systems and methods
US11473860B2 (en)2019-04-252022-10-18Coolit Systems, Inc.Cooling module with leak detector and related systems
US11662037B2 (en)2019-01-182023-05-30Coolit Systems, Inc.Fluid flow control valve for fluid flow systems, and methods
CN116339471A (en)*2023-03-142023-06-27佳木斯大学 A storage server for combining computer and natural language processing
US12188733B2 (en)2021-05-202025-01-07Coolit Systems, Inc.Modular fluid heat exchange systems
US12200914B2 (en)2022-01-242025-01-14Coolit Systems, Inc.Smart components, systems and methods for transferring heat
US12366870B2 (en)2013-03-152025-07-22Coolit Systems, Inc.Flow-path controllers and related systems
DE102009007956B4 (en)*2009-02-062025-08-07Sew-Eurodrive Gmbh & Co Kg Inverter
USD1091529S1 (en)2020-05-192025-09-02Panduit Corp.Network cabinet door

Families Citing this family (74)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6163431A (en)*1998-04-172000-12-19Advanced Digital Information CorporationDoor hinge
DE19817245A1 (en)*1998-04-181999-10-28Loh Kg Rittal Werk switch cabinet
JP3037302B1 (en)*1998-12-172000-04-24米沢日本電気株式会社 Incorrect insertion prevention device for cartridge type recording medium
JP2000194448A (en)*1998-12-252000-07-14Nec CorpElectronic computer having file bay cover with electronic lock and its control method
TW430235U (en)*1999-05-172001-04-11Delta Electronics IncDevice for fixing electrical modules
US6359565B1 (en)*1999-06-032002-03-19Fujitsu Network Communications, Inc.Method and system for monitoring the thermal status of a card shelf
US6233147B1 (en)*1999-06-032001-05-15Micron ElectronicsApparatus for securing a component in a computer chassis
US6220678B1 (en)*1999-06-292001-04-24Emc CorporationElectrical cabinet
US6490153B1 (en)1999-08-062002-12-03California Digital CorporationComputer system for highly-dense mounting of system components
US6885550B1 (en)1999-08-262005-04-26Axxion Group CorporationScrew less clip mounted computer drive
US6619766B1 (en)1999-10-122003-09-16Gateway, Inc.Device mounting and retention assembly
USD427533S (en)*1999-10-202000-07-04Power Measurement Ltd.Electric meter external I/O enclosure
US6678155B1 (en)1999-12-142004-01-13Hewlett-Packard CompanyModular system of internet service provider focused computer services
US6293636B1 (en)1999-12-302001-09-25Gateway, Inc.Device retention assembly
US6938256B2 (en)2000-01-182005-08-30Galactic Computing CorporationSystem for balance distribution of requests across multiple servers using dynamic metrics
US6587347B1 (en)*2000-02-252003-07-01Telica, Inc.Chassis support member
US6407910B1 (en)*2000-04-192002-06-18Hewlett-Packard CompanyComputer with modular drive in separate bay
US6456489B1 (en)2000-05-252002-09-24Gateway, Inc.Device retention apparatus
US6535379B1 (en)*2000-06-012003-03-18Hewlett-Packard CompanyComputer with exchangeable front bezel
US6459571B1 (en)*2000-06-152002-10-01Bull Hn Information Systems Inc.Packaging system for mass memory units
US8538843B2 (en)2000-07-172013-09-17Galactic Computing Corporation Bvi/BcMethod and system for operating an E-commerce service provider
US7844513B2 (en)*2000-07-172010-11-30Galactic Computing Corporation Bvi/BcMethod and system for operating a commissioned e-commerce service prover
US6816905B1 (en)2000-11-102004-11-09Galactic Computing Corporation Bvi/BcMethod and system for providing dynamic hosted service management across disparate accounts/sites
WO2002007488A1 (en)*2000-07-172002-01-24Galactic Computing CorporationScalable internet engine
US6452809B1 (en)2000-11-102002-09-17Galactic Computing CorporationScalable internet engine
US6481809B1 (en)*2000-09-132002-11-19Acorn Product Development, Inc.Sliding module for computer components
GB2371681A (en)2001-01-172002-07-31Sun Microsystems IncFan carrier for a computer system
US6940730B1 (en)*2001-02-282005-09-06Adc Telecommunications, Inc.Telecommunications chassis and card
US6549979B1 (en)*2001-06-072003-04-15Emc CorporationAddress mapping in mass storage device mounting system
US6511139B2 (en)*2001-06-132003-01-28Cheng Kuo LiuModularized industrial console
DE10149743B4 (en)*2001-10-092004-09-23Fujitsu Siemens Computers Gmbh server
DE10151939A1 (en)*2001-10-222003-04-30Infineon Technologies Ag Handling device for solid state storage with a small form factor
US6816391B2 (en)*2001-11-012004-11-09Gateway, Inc.Tool-less access cover and EMI tight access door
GB0129166D0 (en)*2001-12-052002-01-23Florix Technology LtdSupply current usage control system
KR100456582B1 (en)*2001-12-062004-11-10삼성전자주식회사Computer
US6867701B2 (en)2002-04-182005-03-15International Business Machines CorporationComputer-server rack enclosure fault light diagnostic system
US6649830B1 (en)*2002-05-242003-11-18Adc Dsl Systems, Inc.Housing for circuit cards
US6833994B2 (en)*2002-06-102004-12-21Sun Microsystems, Inc.Electronics assembly
US6961248B2 (en)*2002-06-102005-11-01Sun Microsystems, Inc.Electronics assembly
JP4166516B2 (en)*2002-06-142008-10-15株式会社日立製作所 Disk array device
US20040174105A1 (en)*2003-03-052004-09-09Kuo-Chuan HungConcealed base supporting structure of a server cabinet with characteristics of extension, shock proof and tilt proof
US7173821B2 (en)*2003-05-162007-02-06Rackable Systems, Inc.Computer rack with power distribution system
US7027299B2 (en)*2003-08-192006-04-11Sun Microsystems, Inc.Electronics assembly with arrangement for air cooling
US7061767B2 (en)*2004-02-102006-06-13Hewlett-Packard Development Company, L.P.Data systems, apparatuses and/or methods
US7254016B1 (en)*2004-05-252007-08-07Emc CorporationData storage system with improved serviceability features
TW200604776A (en)*2004-07-162006-02-01Aopen IncReversible door with dual pivot axes
US7578733B2 (en)*2004-07-272009-08-25Hewlett-Packard Development Company, L.P.Enclosures with redundant fans in doors with interlocks
US7215553B2 (en)*2004-10-202007-05-08Hewlett-Packard Development Company, L.P.Computer housing with removable light pipe
US20060125358A1 (en)*2004-12-142006-06-15Robert Vernon WilliamsonConsole embedded server rack
US7536752B2 (en)*2005-01-212009-05-26Leviton Manufacturing Company, Inc.Rack mounted component door system and method
TWM289212U (en)*2005-10-142006-04-01Inventec CorpRemovable power supply device
JP3947553B1 (en)*2006-03-312007-07-25株式会社日立コミュニケーションテクノロジー Electronic equipment
DE202006006441U1 (en)*2006-04-212006-07-06Knürr AG Arrangement for cooling electrical assemblies and devices
US20070288813A1 (en)*2006-05-012007-12-13Belady Christian LCell board interconnection architecture with serviceable switch board
US7619897B2 (en)*2006-10-312009-11-17Hewlett-Packard Development Company, L.P.User interface module for a server chassis
US8982565B2 (en)*2007-06-122015-03-17Hewlett-Packard Development Company, L.P.Toolless configuration of a computer enclosure
US8670241B2 (en)*2007-06-132014-03-11Hewlett-Packard Development Company, L.P.Blade device enclosure
US20080309160A1 (en)*2007-06-142008-12-18Hewlett-Packard Development Company, L. P.Modular blade enclosure power subsystem disign
US8140719B2 (en)*2007-06-212012-03-20Sea Micro, Inc.Dis-aggregated and distributed data-center architecture using a direct interconnect fabric
US8075004B2 (en)*2007-09-052011-12-13C.R. Daniels, Inc.Voter terminal storage and transport cart
TWM332244U (en)*2007-09-122008-05-11Wistron CorpFlipping and portable hard disk casing
US7539013B2 (en)*2007-09-272009-05-26International Business Machines CorporationAutomatic air blockage assembly and method for computing environments
TW200938050A (en)*2008-02-202009-09-01Inventec CorpCasing structure of electronic device
US8141621B2 (en)*2008-12-112012-03-27International Business Machines CorporationApparatus and method for providing in situ cooling of computer data centers during service calls
US8014144B2 (en)*2009-08-182011-09-06Inventec CorporationServer device with a storage array module
CN102156516A (en)*2010-02-112011-08-17英业达股份有限公司Server system
TWM413895U (en)*2011-05-192011-10-11Pegatron CorpRack mountable server
SE536735C2 (en)*2012-11-292014-07-01Gestamp Hardtech Ab Door beam for vehicles
CN104427796B (en)*2013-08-272017-12-22华为技术有限公司Rack
US10028401B2 (en)2015-12-182018-07-17Microsoft Technology Licensing, LlcSidewall-accessible dense storage rack
MX384894B (en)*2017-01-122025-03-14Panduit Corp ELECTRONIC EQUIPMENT CABINET.
TWI625085B (en)*2017-04-262018-05-21和碩聯合科技股份有限公司Server casing
US10398046B2 (en)*2018-01-302019-08-27Quanta Computer Inc.Server rack with damping post
US10946912B1 (en)*2018-12-102021-03-16Amazon Technologies, Inc.Chassis assembly for autonomous ground vehicle

Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4728160A (en)*1986-10-221988-03-01Digital Equipment CorporationCabinet for a computer assembly
US5227957A (en)*1992-05-141993-07-13Deters John BModular computer system with passive backplane
US5417012A (en)*1993-11-231995-05-23Digital Equipment CorporationEquipment cabinet door mountable on either side and having a central latch
US5460441A (en)*1994-11-011995-10-24Compaq Computer CorporationRack-mounted computer apparatus
US5544008A (en)*1994-06-301996-08-06International Business Machines CorporationComputer expansion module apparatus

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3001102A (en)*1958-11-121961-09-19Sperry Rand Corp Ford Instr CoIntegrated plug-in unit
US4680425A (en)*1985-06-191987-07-14Ncr CorporationCable strain relief device
US4748540A (en)*1987-04-241988-05-31Honeywell Bull Inc.Compact packaging of electronic equipment within a small profile enclosure
JP2746710B2 (en)*1989-12-301998-05-06株式会社日立製作所 Information processing device that can be installed vertically
US5027257A (en)*1990-01-081991-06-25Sun Microsystems, Inc.Deskside computer housing
DE9103503U1 (en)*1991-03-211991-06-20Siemens Nixdorf Informationssysteme AG, 4790 Paderborn Modular construction system for mainframe computers
US5379184A (en)*1991-08-301995-01-03Unisys CorporationPry-in/pry-out disk drive receptacle

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4728160A (en)*1986-10-221988-03-01Digital Equipment CorporationCabinet for a computer assembly
US5227957A (en)*1992-05-141993-07-13Deters John BModular computer system with passive backplane
US5417012A (en)*1993-11-231995-05-23Digital Equipment CorporationEquipment cabinet door mountable on either side and having a central latch
US5544008A (en)*1994-06-301996-08-06International Business Machines CorporationComputer expansion module apparatus
US5460441A (en)*1994-11-011995-10-24Compaq Computer CorporationRack-mounted computer apparatus

Non-Patent Citations (49)

* Cited by examiner, † Cited by third party
Title
Acer "Adapt Ability" advertisement, 1994.
Acer Adapt Ability advertisement, 1994.*
Acer s AcerAltos 17000 brochure, 1994.*
Acer's AcerAltos 17000 brochure, 1994.
Artecon Sphinx SPARC brochure.*
Auspex NS 7000/Netserver Family brochure, 1994.*
Clariion Series 1000, Models 1100, 1110, and 1300 Disk Arrays brochure, 1994.*
Clariion Series 2000, Models 2200, 2210, & 2300 Disk Arrays brochure, 1994.*
COMPAQ Overview of Rack Mountable Compaq ProLiant, brochure.*
COMPAQ Overview of Rack-Mountable Compaq ProLiant, brochure.
Cubix BC Series Single Board Computers, QL Series Host Communications Processors, Intelligent Environmental Sensor brochure, Apr. 1994.*
Datago Hewlett Packard "Straight Talk, Honest Answers, No Hidden Costs" Advertisement, 1994.
Datago Hewlett Packard Straight Talk, Honest Answers, No Hidden Costs Advertisement, 1994.*
Dell Advanced Solutions Capabilities Guide, 1994.*
Digital Alpha AXP Systems Summary brochure, Apr. 1994.*
Hewlett Packard "Just What You'd Expect From the Leaders in UNIX Systems. Leadership|" Advertisement, Reseller Management, Sep., 1994, p. 205.
Hewlett Packard Fast/Wide SCSI Disk Arrays for HP 9000 Series 800 Business Servers and Series 700 Workstations brochure, 1993.*
Hewlett Packard HP Models 120T and 200T Optical Disk Jukebox brochure, Nov., 1993.*
Hewlett Packard Just What You d Expect From the Leaders in UNIX Systems. Leadership Advertisement, Reseller Management, Sep., 1994, p. 205.*
Hewlett Packard Series 6000 SCSI Mass Storage Systems for HP Computers brochure, 1993.*
IBM POWERparallel Systems 9076 SP2 Model 3A2 and 9076 Sp2 Model 3A3 pamphlet.*
IBM RISC System/6000 Model J30 PowerPC Server brochure, Oct., 1994.*
IBM RISC System/6000 Rack Mounted Servers brochure, Oct., 1994.*
IBM Scalable POWERparallel Systems Business Solutions brochure, Mar., 1994.*
IPL Systems ESP RAID Tower brochure, Jun., 1994.*
IPL Systems ESP-RAID Tower brochure, Jun., 1994.
Motorola PowerStack Series MP Models MP601 75 2 and MP601 75 4 brochure, 1994.*
Motorola PowerStack Series MP Models MP601-75-2 and MP601-75-4 brochure, 1994.
MTI NFS File Server StingRay NFS brochure.*
MTI StorageWare RAID brochure.*
NEC Express RISCserver brochure, Mar., 1994.*
Newbridge Network Products and Support brochure, 1994.*
PC Wholesale advertisement.*
Sequent Symmetry 5000 Clusters brochure, 1994.*
Sequent Symmetry 5000 Series brochure, 1994.*
Sequent WinServer 3500 brochure, 1994.*
Siemens Nixdorf RM600 brochure, 1994.*
Siemens-Nixdorf RM600 brochure, 1994.
Silicon Graphics brochure, 1994.*
Sun s SPARCcluster PDB, SPARCcluster 2000PDB and SPARCserver 1000PDB brochure, Sep., 1994.*
Sun SPARCcenter 2000E brochure, Sep., 1994.*
Sun's SPARCcluster PDB, SPARCcluster 2000PDB and SPARCserver 1000PDB brochure, Sep., 1994.
Sun'SPARCcenter 2000E brochure, Sep., 1994.
Tandem Fault Tolerant UNIX Systems Product Description for Integrity FT Systems Family, 1994.*
Tandem Fault-Tolerant UNIX Systems Product Description for Integrity FT Systems Family, 1994.
Tandem UNIX Network Resource Server Specifications for Integrity NR SMP Servers, 1994.*
Tatung Science & Technology SuperCOMPserver 20 SERIES brochure.*
UNIX Review Outstanding Networking Product of 1993 FAServer ad. Dec., 1993.*
Worldwide Information Systems Bull Escala Symmetric Multiprocessor brochure.*

Cited By (282)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6188973B1 (en)*1996-11-152001-02-13Compaq Computer CorporationAutomatic mapping, monitoring, and control of computer room components
US5959841A (en)*1996-12-311999-09-28Compaq Computer Corp.Modular computer chassis with extractor device mounted to the housing
US7370225B2 (en)1997-05-132008-05-06Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6742069B2 (en)1997-05-132004-05-25Micron Technology, Inc.Method of providing an interface to a plurality of peripheral devices using bus adapter chips
US6895526B2 (en)1997-05-132005-05-17Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6701453B2 (en)1997-05-132004-03-02Micron Technology, Inc.System for clustering software applications
US6697963B1 (en)1997-05-132004-02-24Micron Technology, Inc.Method of updating a system environmental setting
US8468372B2 (en)1997-05-132013-06-18Round Rock Research, LlcDiagnostic and managing distributed processor system
US7065600B2 (en)1997-05-132006-06-20Micron Technology, Inc.Method of providing an interface to a plurality of peripheral devices using bus adapter chips
US6604207B2 (en)1997-05-132003-08-05Micron Technology, Inc.System architecture for remote access and control of environmental management
US6598173B1 (en)1997-05-132003-07-22Micron Technology, Inc.Method of remote access and control of environmental conditions
US6073255A (en)1997-05-132000-06-06Micron Electronics, Inc.Method of reading system log
US7669064B2 (en)1997-05-132010-02-23Micron Technology, Inc.Diagnostic and managing distributed processor system
US6249828B1 (en)1997-05-132001-06-19Micron Electronics, Inc.Method for the hot swap of a mass storage adapter on a system including a statically loaded adapter driver
US7451343B2 (en)1997-05-132008-11-11Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6526333B1 (en)1997-05-132003-02-25Micron Technology, Inc.Computer fan speed control system method
US6122758A (en)1997-05-132000-09-19Micron Electronics, Inc.System for mapping environmental resources to memory for program access
US6122746A (en)1997-05-132000-09-19Micron Electronics, Inc.System for powering up and powering down a server
US6134673A (en)1997-05-132000-10-17Micron Electronics, Inc.Method for clustering software applications
US6253334B1 (en)1997-05-132001-06-26Micron Electronics, Inc.Three bus server architecture with a legacy PCI bus and mirrored I/O PCI buses
US6138250A (en)1997-05-132000-10-24Micron Electronics, Inc.System for reading system log
US7263570B2 (en)1997-05-132007-08-28Micron Technology, Inc.Method of providing an interface to a plurality of peripheral devices using bus adapter chips
US6145098A (en)1997-05-132000-11-07Micron Electronics, Inc.System for displaying system status
US6148355A (en)1997-05-132000-11-14Micron Electronics, Inc.Configuration management method for hot adding and hot replacing devices
US6523131B1 (en)1997-05-132003-02-18Micron Technology, Inc.Method for communicating a software-generated pulse waveform between two servers in a network
US6499073B1 (en)1997-05-132002-12-24Micron Electronics, Inc.System using programmable processor for selectively enabling or disabling power to adapter in response to respective request signals
US6484226B2 (en)1997-05-132002-11-19Micron Technology, Inc.System and method for the add or swap of an adapter on an operating computer
US6163849A (en)1997-05-132000-12-19Micron Electronics, Inc.Method of powering up or powering down a server to a maintenance state
US6163825A (en)1997-05-132000-12-19Micron Electronics, Inc.Method for hot adding a network adapter by identifying and executing the adapter driver based upon the logical board number of the network adapter
US6163853A (en)1997-05-132000-12-19Micron Electronics, Inc.Method for communicating a software-generated pulse waveform between two servers in a network
US6170028B1 (en)1997-05-132001-01-02Micron Electronics, Inc.Method for hot swapping a programmable network adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6170067B1 (en)1997-05-132001-01-02Micron Technology, Inc.System for automatically reporting a system failure in a server
US6173346B1 (en)1997-05-132001-01-09Micron Electronics, Inc.Method for hot swapping a programmable storage adapter using a programmable processor for selectively enabling or disabling power to adapter slot in response to respective request signals
US6247898B1 (en)1997-05-132001-06-19Micron Electronics, Inc.Computer fan speed control system
US7370226B2 (en)1997-05-132008-05-06Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6179486B1 (en)1997-05-132001-01-30Micron Electronics, Inc.Method for hot add of a mass storage adapter on a system including a dynamically loaded adapter driver
US6182180B1 (en)1997-05-132001-01-30Micron Electronics, Inc.Apparatus for interfacing buses
US5987554A (en)*1997-05-131999-11-16Micron Electronics, Inc.Method of controlling the transfer of information across an interface between two buses
US6189109B1 (en)1997-05-132001-02-13Micron Electronics, Inc.Method of remote access and control of environmental conditions
US6192434B1 (en)1997-05-132001-02-20Micron Electronics, IncSystem for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6195717B1 (en)1997-05-132001-02-27Micron Electronics, Inc.Method of expanding bus loading capacity
US6202111B1 (en)1997-05-132001-03-13Micron Electronics, Inc.Method for the hot add of a network adapter on a system including a statically loaded adapter driver
US6202160B1 (en)1997-05-132001-03-13Micron Electronics, Inc.System for independent powering of a computer system
US7444537B2 (en)1997-05-132008-10-28Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6219734B1 (en)1997-05-132001-04-17Micron Electronics, Inc.Method for the hot add of a mass storage adapter on a system including a statically loaded adapter driver
US6418492B1 (en)1997-05-132002-07-09Micron ElectronicsMethod for computer implemented hot-swap and hot-add
US6243773B1 (en)1997-05-132001-06-05Micron Electronics, Inc.Configuration management system for hot adding and hot replacing devices
US6247080B1 (en)1997-05-132001-06-12Micron Electronics, Inc.Method for the hot add of devices
US6249834B1 (en)1997-05-132001-06-19Micron Technology, Inc.System for expanding PCI bus loading capacity
US6249885B1 (en)1997-05-132001-06-19Karl S. JohnsonMethod for managing environmental conditions of a distributed processor system
US7444550B2 (en)1997-05-132008-10-28Micron Technology, Inc.System and method for communicating a software-generated pulse waveform between two servers in a network
US6363497B1 (en)1997-05-132002-03-26Micron Technology, Inc.System for clustering software applications
US6134668A (en)1997-05-132000-10-17Micron Electronics, Inc.Method of selective independent powering of portion of computer system through remote interface from remote interface power supply
US7552364B2 (en)1997-05-132009-06-23Micron Technology, Inc.Diagnostic and managing distributed processor system
US6266721B1 (en)1997-05-132001-07-24Micron Electronics, Inc.System architecture for remote access and control of environmental management
US6269417B1 (en)1997-05-132001-07-31Micron Technology, Inc.Method for determining and displaying the physical slot number of an expansion bus device
US6272648B1 (en)1997-05-132001-08-07Micron Electronics, Inc.System for communicating a software-generated pulse waveform between two servers in a network
US6282673B1 (en)1997-05-132001-08-28Micron Technology, Inc.Method of recording information system events
US6292905B1 (en)1997-05-132001-09-18Micron Technology, Inc.Method for providing a fault tolerant network using distributed server processes to remap clustered network resources to other servers during server failure
US6341322B1 (en)1997-05-132002-01-22Micron Electronics, Inc.Method for interfacing two buses
US6304929B1 (en)1997-05-132001-10-16Micron Electronics, Inc.Method for hot swapping a programmable adapter by using a programmable processor to selectively disabling and enabling power thereto upon receiving respective control signals
US6332202B1 (en)1997-05-132001-12-18Micron Technology, Inc.Method of remote access and control of environmental conditions
US6324608B1 (en)1997-05-132001-11-27Micron ElectronicsMethod for hot swapping of network components
US6330690B1 (en)1997-05-132001-12-11Micron Electronics, Inc.Method of resetting a server
US6181549B1 (en)*1997-06-242001-01-30Dell Products, L.P.Chassis retaining system for an electronics rack
US6016252A (en)*1997-06-302000-01-18Emc CorporationCable management system
US6742068B2 (en)*1997-06-302004-05-25Emc CorporationData server with hot replaceable processing unit modules
US6157534A (en)*1997-06-302000-12-05Emc CorporationBackplane having strip transmission line ethernet bus
US6034868A (en)*1997-09-152000-03-07Kingston Technology CompanyExpansion chassis having a removable wiring bracket and external computer memory
US6175490B1 (en)*1997-10-012001-01-16Micron Electronics, Inc.Fault tolerant computer system
US6035420A (en)*1997-10-012000-03-07Micron Electronics, Inc.Method of performing an extensive diagnostic test in conjunction with a bios test routine
US6088816A (en)1997-10-012000-07-11Micron Electronics, Inc.Method of displaying system status
US6212585B1 (en)1997-10-012001-04-03Micron Electronics, Inc.Method of automatically configuring a server after hot add of a device
US6065053A (en)1997-10-012000-05-16Micron Electronics, Inc.System for resetting a server
US6263387B1 (en)1997-10-012001-07-17Micron Electronics, Inc.System for automatically configuring a server after hot add of a device
US6154835A (en)1997-10-012000-11-28Micron Electronics, Inc.Method for automatically configuring and formatting a computer system and installing software
US6138179A (en)1997-10-012000-10-24Micron Electronics, Inc.System for automatically partitioning and formatting a primary hard disk for installing software in which selection of extended partition size is not related to size of hard disk
US6040982A (en)*1997-10-162000-03-21Dell Usa, L.P.Electronic system implementing redundant and nonredundant power supply configurations
US6088224A (en)*1997-12-032000-07-11Emc CorporationCabinet for storing a plurality of processing unit modules
US6580604B1 (en)*1997-12-232003-06-17Dell U.S.A., L.P.Peripheral device bay with adapter plates
US6038892A (en)*1998-01-272000-03-21Dell Usa, L.P.Combination keylock device and securing device
US6050658A (en)*1998-02-232000-04-18Richmount Computer LimitedCarrier for an electronic device
US6109710A (en)*1998-02-262000-08-29Toshiba America Information Systems, Inc.Side door for computer chassis
USD409164S (en)*1998-04-131999-05-04Dsc Telecom L.P.Enclosure for electronic components
US6025989A (en)*1998-04-212000-02-15International Business Machines CorporationModular node assembly for rack mounted multiprocessor computer
US6223234B1 (en)1998-07-172001-04-24Micron Electronics, Inc.Apparatus for the hot swap and add of input/output platforms and devices
US6988626B2 (en)1998-07-312006-01-24Varghese Paily TComputer component rack mounting arrangement
US6154361A (en)*1998-10-022000-11-28International Business Machines CorporationDisk-drive chassis for reducing transmission of vibrations between disk-drive units of a disk-drive array
US6618246B2 (en)1999-02-192003-09-09General Dynamics Information SystemsData storage housing
US6320744B1 (en)1999-02-192001-11-20General Dynamics Information Systesm, Inc.Data storage housing
WO2000049487A1 (en)*1999-02-192000-08-24General Dynamics Information Systems, Inc.Data storage housing
US6359775B1 (en)1999-08-112002-03-19Micron Technology, Inc.Accessible desktop computer
US6331933B1 (en)*1999-10-082001-12-18Sun Microsystems, Inc.Power sub-frame for a system unit
US6525930B1 (en)*1999-10-082003-02-25Sun Microsystems, Inc.Mounting media drives in a computer system on a carriage
US6349029B1 (en)1999-10-202002-02-19Micronpc, LlcComputer component security apparatus and method
US20040070936A1 (en)*1999-10-262004-04-15Giovanni CoglitoreHigh density computer equipment storage system
US20070159790A1 (en)*1999-10-262007-07-12Giovanni CoglitoreHigh density computer equipment storage system
US8582290B2 (en)1999-10-262013-11-12Silicon Graphics International Corp.High density computer equipment storage system
US6301095B1 (en)*1999-12-232001-10-093Com CorporationSystem and method of distributing power to a plurality of electronic modules housed within an electronics cabinet
US6480398B1 (en)2000-01-052002-11-12Compaq Computer CorporationCPU easy access panels
US6452789B1 (en)*2000-04-292002-09-17Hewlett-Packard CompanyPackaging architecture for 32 processor server
US6549397B1 (en)*2000-05-262003-04-15Hewlett-Packard CompanyTower computer with low center of gravity
US6525926B1 (en)*2000-07-112003-02-25Racklogic Technologies, Inc.Multinode high density computing apparatus
EP1175136A3 (en)*2000-07-192002-05-15Internet Research Institute, Inc.A cartridge type server unit and a cabinet to accommodate multiple said server units
US6724617B2 (en)2000-07-192004-04-20Internet Research Institute, Inc.Server unit comprising stacked multiple server unit cabinets accommodating multiple cartridge type server units
US6621713B2 (en)2000-07-192003-09-16Internet Research Institute, Inc.Cartridge type server unit and a cabinet to accommodate multiple said server units
US7165120B1 (en)*2000-10-112007-01-16Sun Microsystems, Inc.Server node with interated networking capabilities
US6462670B1 (en)*2000-10-182002-10-08Compaq Computer CorporationServer system having front and rear identification
US20040183409A1 (en)*2001-01-232004-09-23Cooper Technologies CompanyElectrical equipment enclosure
US8717749B2 (en)2001-03-052014-05-06Intel CorporationModular server architecture with ethernet routed across an ethernet switch module
US20020124114A1 (en)*2001-03-052002-09-05Bottom David A.Modular server architecture with ethernet routed across a backplane utilizing an integrated ethernet switch module
US20080212276A1 (en)*2001-03-052008-09-04Bottom David AModular server architecture with ethernet routed across a backplane utilizing an integrated ethernet switch module
US7339786B2 (en)*2001-03-052008-03-04Intel CorporationModular server architecture with Ethernet routed across a backplane utilizing an integrated Ethernet switch module
US7755881B2 (en)2001-03-052010-07-13Intel CorporationModular server architecture with Ethernet routed across a backplane utilizing an integrated Ethernet switch module
US20060010275A1 (en)*2001-03-292006-01-12Quantum CorporationRemovable disk storage array emulating tape library having backup and archive capability
US20020144044A1 (en)*2001-03-292002-10-03Moon William G.Removable disk storage array emulating tape library having backup and archive capability
US6957291B2 (en)*2001-03-292005-10-18Quantum CorporationRemovable disk storage array emulating tape library having backup and archive capability
USD454111S1 (en)2001-04-052002-03-05Unipower Northeast Technical CenterHigh density, hot pluggable power supply
US20030052580A1 (en)*2001-09-192003-03-20Dobler Karl J.Snap-on slide and rail assembly and method of assembling same
US6976745B2 (en)2001-09-192005-12-20Hewlett-Packard Development Company, L.P.Snap-on slide and rail assembly
US6962397B2 (en)2001-09-192005-11-08Hewlett-Packard Development Company, L.P.Expandable slide and rail assembly for a rack
WO2003050666A1 (en)*2001-12-072003-06-19Envirosense, LlcPedestal enclosure with improved accessibility to components and improved ingress protection
US20050165998A1 (en)*2002-02-132005-07-28Quantum CorporationUse of the universal serial bus as an internal architecture within IDE disk array
US20100100330A1 (en)*2002-04-242010-04-22Ascend Geo, LlcMethods and systems for acquiring and processing seismic data
US7668044B2 (en)*2002-04-242010-02-23Ascend Geo, LlcData offload and charging systems and methods
US20050246137A1 (en)*2002-04-242005-11-03Ascend Geo LlcData offload and charging systems and methods
US20030223199A1 (en)*2002-05-312003-12-04Racksaver, Inc.Rack mountable computer component and method of making same
US20030224645A1 (en)*2002-05-312003-12-04Racksaver, Inc.Rack mountable computer component power distribution unit and method
US6867966B2 (en)2002-05-312005-03-15Verari Systems, Inc.Method and apparatus for rack mounting computer components
US6801428B2 (en)2002-05-312004-10-05Racksaver, Inc.Rack mountable computer component fan cooling arrangement and method
US7420805B2 (en)2002-05-312008-09-02Verari Systems, Inc.Method and apparatus for rack mounting computer components
US6909611B2 (en)2002-05-312005-06-21Verari System, Inc.Rack mountable computer component and method of making same
US6836030B2 (en)2002-05-312004-12-28Verari Systems, Inc.Rack mountable computer component power distribution unit and method
US20050083651A1 (en)*2002-05-312005-04-21Smith John V.Method and apparatus for rack mounting computer components
US20030223193A1 (en)*2002-05-312003-12-04Racksaver, Inc.Method and apparatus for rack mounting computer components
US20050024825A1 (en)*2002-05-312005-02-03Smith John V.Rack mountable computer component fan cooling arrangement and method
US7558056B2 (en)*2002-06-142009-07-07Hitachi, Ltd.Disk array device
US7876557B2 (en)2002-06-142011-01-25Hitachi, Ltd.Disk array device
US20080144277A1 (en)*2002-06-142008-06-19Hitachi, Ltd.Disk array device
US20090237876A1 (en)*2002-06-142009-09-24Hitachi, Ltd.Disk array device
US6769551B2 (en)2002-07-262004-08-03Dell Products L.P.System and method for utilizing non-dedicated rack space
US20040057216A1 (en)*2002-09-252004-03-25Smith John V.Electronic component rack assembly and method
USD495699S1 (en)2002-10-032004-09-07Nec CorporationMemory control equipment for computers
US6902069B2 (en)2002-10-232005-06-07Dell Products L.P.System and method for rack cable management
US7218526B2 (en)2002-12-202007-05-15Hewlett-Packard Development Company, L.P.Multi-configurable telecommunications rack mounting system and method incorporating same
US7012808B2 (en)2002-12-202006-03-14Hewlett-Packard Development Company, L.P.Multi-configurable telecommunications rack mounting system and method incorporating same
US20050128689A1 (en)*2003-01-102005-06-16Lockheed Martin CorporationSelf-sustaining environmental control unit
US20040190229A1 (en)*2003-01-102004-09-30Caci J. ClaudeSelf-sustaining environmental control unit
US7203574B2 (en)2003-01-102007-04-10Lockheed Martin CorporationSelf-sustaining environmental control unit
US7272468B2 (en)2003-01-102007-09-18Lockheed Martin CorporationSelf-sustaining environmental control unit
US7137512B2 (en)2003-02-192006-11-21Hewlett-Packard Development Company, L.P.Removable rails for use on racks
US7168576B2 (en)2003-03-212007-01-30Dell Products L.P.Tool-less cable management attachment bracket and method of use
US20040182798A1 (en)*2003-03-212004-09-23Dell Products L.P.Tool-less cable management attachment bracket and method of use
US8607993B2 (en)2003-03-212013-12-17Dell Products L.P.Tool-less cable management attachment bracket and method of use
US20080164789A1 (en)*2003-03-212008-07-10Dell Products L.P.Tool-less Cable Management Attachment Bracket And Method Of Use
US9022233B2 (en)2003-03-212015-05-05Dell Products L.P.Tool-less cable management attachment bracket and method of use
US7120013B1 (en)2003-04-112006-10-10Raytheon CompanySystem and method for transferring large amounts of stored data
WO2004095256A3 (en)*2003-04-112005-07-07Raytheon CoSystem and method for transferring large amounts of stored data
AU2004232287B2 (en)*2003-04-112010-12-09Raytheon CompanySystem and method for transferring large amounts of stored data
US7227744B2 (en)*2003-04-252007-06-05Teac CorporationData recording device and memory cartridge of data recording device
US20040223294A1 (en)*2003-04-252004-11-11Yasuhide KitaokaData recording device and memory cartridge of data recording device
US20040252467A1 (en)*2003-06-112004-12-16Hewlett-Packard Development Company, L.P.Multi-computer system
GB2402814A (en)*2003-06-112004-12-15Hewlett Packard Development CoMulti-computer system
GB2402814B (en)*2003-06-112007-04-11Hewlett Packard Development CoMulti-computer system
US7136283B2 (en)2003-06-112006-11-14Hewlett-Packard Development Company, L.P.Multi-computer system
US20050052850A1 (en)*2003-09-092005-03-10Quantum CorporationWorkshelf for a computer rack
US6961246B2 (en)*2003-09-092005-11-01Quantum CorporationWorkshelf for a computer rack
US20050068723A1 (en)*2003-09-262005-03-31Craig SquillanteComputer case having a sliding door and method therefor
US20050071689A1 (en)*2003-09-262005-03-31Continuous Computing CorporationIndependently powered slots architecture and method
US7097047B2 (en)2003-09-302006-08-29Dell Products L.P.Cable management flip tray assembly
US20050067358A1 (en)*2003-09-302005-03-31Dell Products L.P.Cable management flip tray assembly
US8162417B2 (en)2004-01-232012-04-24American Power Conversion CorporationModular UPS
US7379305B2 (en)*2004-01-232008-05-27American Power Conversion CorporationModular UPS
US20050162836A1 (en)*2004-01-232005-07-28James BriggsModular UPS
US8854824B2 (en)2004-01-232014-10-07Schneider Electric It CorporationModular UPS
US20060245168A1 (en)*2004-01-292006-11-02Tomonori SoedaDisk array device and disk array device cable support method
US7447036B2 (en)2004-01-292008-11-04Hitachi, Ltd.Disk array device and disk array device cable support method
US20050169127A1 (en)*2004-01-292005-08-04Tomonori SoedaDisk array device and disk array device cable support method
US7095616B2 (en)*2004-01-292006-08-22Hitachi, Ltd.Disk array device and disk array device cable support method
US20050219811A1 (en)*2004-03-312005-10-06Giovanni CoglitoreComputer rack cooling system
US7123477B2 (en)2004-03-312006-10-17Rackable Systems, Inc.Computer rack cooling system
US7860582B2 (en)*2004-06-232010-12-28National Instruments CorporationCompact modular embedded device
US20050289274A1 (en)*2004-06-232005-12-29National Instruments CorporationCompact modular embedded device
WO2006007467A3 (en)*2004-07-012007-03-01Ario Data Networks IncMulti-depth drive enclosure
US7200008B1 (en)*2004-07-012007-04-03Bhugra Kern SMulti-depth drive enclosure
CN1825464B (en)*2005-02-222012-04-25株式会社日立制作所Disk device
US20070283710A1 (en)*2006-06-122007-12-13Sun Microsystems, Inc.Method and system for cooling electronic equipment
US7768788B2 (en)*2007-03-202010-08-03Kevin ChenCabinet for storing rack mount computer
US20080232055A1 (en)*2007-03-202008-09-25Kevin ChenCabinet for Storing Rack Mount Computer
US20120000054A1 (en)*2007-05-172012-01-05Manzi Steven FStandalone open frame
US20080290051A1 (en)*2007-05-172008-11-27Manzi Steven FStandalone open frame
US8272520B2 (en)*2007-05-172012-09-25Hewlett-Packard Development Company, L.P.Standalone open frame
US8020715B2 (en)2007-05-172011-09-20Hewlett-Packard Development Company, L.P.Standalone open frame
US7606044B2 (en)2007-06-062009-10-20Dell Products L.P.Multi-purpose structural support I/O member for a server
US20080304228A1 (en)*2007-06-062008-12-11Dell Products L.P.Multi-Purpose Structural Support I/O Member For A Server
US8820395B2 (en)2007-12-172014-09-02Cray Inc.Cooling systems and heat exchangers for cooling computer components
US9596789B2 (en)2007-12-172017-03-14Cray Inc.Cooling systems and heat exchangers for cooling computer components
US9288935B2 (en)2007-12-172016-03-15Cray Inc.Cooling systems and heat exchangers for cooling computer components
US10082845B2 (en)2007-12-172018-09-25Cray, Inc.Cooling systems and heat exchangers for cooling computer components
US8170724B2 (en)2008-02-112012-05-01Cray Inc.Systems and associated methods for controllably cooling computer components
US10588246B2 (en)2008-02-112020-03-10Cray, Inc.Systems and associated methods for controllably cooling computer components
US9420729B2 (en)2008-02-112016-08-16Cray Inc.Systems and associated methods for controllably cooling computer components
US7864523B2 (en)*2008-03-282011-01-04Fujitsu LimitedCooling device for accommodated printed circuit board in a chassis
WO2009124007A3 (en)*2008-03-312012-03-15Telezygology Inc.Improvements in computer room security
CN102308439B (en)*2008-03-312016-08-03远程接合技术公司Module for server rack
AU2014280950B2 (en)*2008-03-312016-04-28Telezygology IncImprovements in Computer Room Security
US20110025502A1 (en)*2008-03-312011-02-03Dickory Rudduck Computer Room Security
CN102308439A (en)*2008-03-312012-01-04远程接合技术公司Improvements in computer room security
US9253931B2 (en)*2008-03-312016-02-02Telezygology, Inc.Computer room security
WO2009124007A2 (en)2008-03-312009-10-08Telezygology Inc.Improvements in computer room security
EP2272132A4 (en)*2008-03-312017-05-03Telezygology Inc.Improvements in computer room security
US7898799B2 (en)2008-04-012011-03-01Cray Inc.Airflow management apparatus for computer cabinets and associated methods
US8368534B2 (en)*2008-05-292013-02-05Commscope Inc. Of North CarolinaOptical fiber systems and methods for monitoring remote door access
US20090295579A1 (en)*2008-05-292009-12-03Commscope, Inc. Of North CarolinaOptical fiber systems and methods for monitoring remote door access
US8965150B2 (en)2008-05-292015-02-24Commscope, Inc. Of North CarolinaOptical switch assembly for detecting movement
US8537539B2 (en)2008-10-172013-09-17Cray Inc.Air conditioning systems for computer systems and associated methods
US7903403B2 (en)*2008-10-172011-03-08Cray Inc.Airflow intake systems and associated methods for use with computer cabinets
US8081459B2 (en)2008-10-172011-12-20Cray Inc.Air conditioning systems for computer systems and associated methods
DE102009007956B4 (en)*2009-02-062025-08-07Sew-Eurodrive Gmbh & Co Kg Inverter
US20100270897A1 (en)*2009-04-232010-10-28Lin Te-ChangIndustrial computer chassis structure with power source disposed centrally
US7839624B2 (en)*2009-04-232010-11-23Super Micro Computer Inc.Industrial computer chassis structure with power source disposed centrally
US20100306544A1 (en)*2009-06-022010-12-02Microsoft CorporationSecure computing environment in a transportable container
US9310856B2 (en)2010-04-202016-04-12Cray Inc.Computer cabinets having progressive air velocity cooling systems and associated methods of manufacture and use
US8472181B2 (en)2010-04-202013-06-25Cray Inc.Computer cabinets having progressive air velocity cooling systems and associated methods of manufacture and use
US20110261521A1 (en)*2010-04-222011-10-27Wentai LoComputer case with adjustable hard disk drive and interface card accommodation space
US8179675B2 (en)*2010-04-222012-05-15Logic Concept Technology Co., Ltd.Computer case with adjustable hard disk drive and interface card accommodation space
US10117361B2 (en)2010-04-302018-10-30M&A Technology, Inc.Computer storage array
US8561814B2 (en)2010-04-302013-10-22M&A Technology, Inc.Stackable modular personal computer array
US20110266229A1 (en)*2010-04-302011-11-03M&A Technology, Inc.Stackable modular personal computer array
US8325478B2 (en)*2010-07-162012-12-04Rockwell Automation Technologies, Inc.Cooling duct attachment and sealing for a motor drive
US9084376B2 (en)2010-07-162015-07-14Rockwell Automation Technologies, Inc.Heat sink cooling arrangement for multiple power electronic circuits
US20120014062A1 (en)*2010-07-162012-01-19Rockwell Automation Technologies, Inc.Cooling duct attachment and sealing for a motor drive
US8325479B2 (en)*2010-07-162012-12-04Rockwell Automation Technologies, Inc.Motor drive cooling duct system and method
US20120014154A1 (en)*2010-07-162012-01-19Rockwell Automation Technologies, Inc.Motor drive cooling duct system and method
US8335081B2 (en)2010-07-162012-12-18Rockwell Automation Technologies, Inc.Heat sink cooling arrangement for multiple power electronic circuits
US20120039035A1 (en)*2010-08-102012-02-16Hon Hai Precision Industry Co., Ltd.Server system and heat dissipation device thereof
US20120106090A1 (en)*2010-11-022012-05-03Hon Hai Precision Industry Co., Ltd.Electronic device access door
US8498119B2 (en)*2010-11-022013-07-30Hong Fu Jin Precision Industry (Shenzhen) Co., Ltd.Electronic device access door
KR101356088B1 (en)*2011-01-252014-01-28광저우 홀드스톰 사이언스 앤 테크놀로지 컴퍼니 리미티드Modular energy-efficient and safety network cabinet
US9496200B2 (en)2011-07-272016-11-15Coolit Systems, Inc.Modular heat-transfer systems
US10820450B2 (en)2011-07-272020-10-27Coolit Systems, Inc.Modular heat-transfer systems
US12213289B2 (en)2011-07-272025-01-28Coolit Systems, Inc.Modular heat-transfer systems
US10365667B2 (en)2011-08-112019-07-30Coolit Systems, Inc.Flow-path controllers and related systems
US11714432B2 (en)2011-08-112023-08-01Coolit Systems, Inc.Flow-path controllers and related systems
US20150076975A1 (en)*2012-05-232015-03-19Huawei Technologies Co., Ltd.Container data center
US20140063739A1 (en)*2012-08-302014-03-06Delta Electronics, Inc.Heat-dissipating system for high-power cabinet and static var compensation system
US9706690B2 (en)*2012-08-302017-07-11Delta Electronics, Inc.Heat-dissipating system for high-power cabinet and static var compensation system
US9426932B2 (en)2013-03-132016-08-23Silicon Graphics International Corp.Server with heat pipe cooling
US10048729B2 (en)2013-03-132018-08-14Hewlett Packard Enterprise Development LpServer with heat pipe cooling
US11661936B2 (en)2013-03-152023-05-30Coolit Systems, Inc.Sensors, multiplexed communication techniques, and related systems
US9612920B2 (en)2013-03-152017-04-04Silicon Graphics International Corp.Hierarchical system manager rollback
US12366870B2 (en)2013-03-152025-07-22Coolit Systems, Inc.Flow-path controllers and related systems
US10364809B2 (en)2013-03-152019-07-30Coolit Systems, Inc.Sensors, multiplexed communication techniques, and related systems
US9943014B2 (en)2013-03-152018-04-10Coolit Systems, Inc.Manifolded heat exchangers and related systems
US9892614B2 (en)2013-05-132018-02-13CommScope Connectivity Belgium BVBAOptical sensor, optical sensor assembly and monitoring device
US9741229B2 (en)2013-05-132017-08-22CommScope Connectivity Belgium BVBAOptical sensor, optical sensor assembly and monitoring device
US20150070829A1 (en)*2013-09-112015-03-12Hon Hai Precision Industry Co., Ltd.Server with supporting bracket
US10034546B2 (en)2013-09-252018-07-31CommScope Connectivity Belgium BVBADevice and method for mounting a sensor and for sealing a cabinet
US10694850B2 (en)2013-09-252020-06-30CommScope Connectivity Belgium BVBADevice and method for mounting a sensor and for sealing a cabinet
US20150098168A1 (en)*2013-10-092015-04-09Hon Hai Precision Industry Co., Ltd.Server cabinet
USD780749S1 (en)*2013-10-222017-03-07Western Digital Technologies, Inc.Storage device
US9377808B1 (en)*2014-02-102016-06-28American Megatrends, Inc.Modular computer enclosure with bracket system and rotatable plates
USD837211S1 (en)2014-10-292019-01-01Western Digital Technologies, Inc.Storage device
USD949149S1 (en)2014-10-292022-04-19Western Digital Technologies, Inc.Storage device
USD977477S1 (en)2014-10-292023-02-07Western Digital Technologies, Inc.Storage device
US20170023988A1 (en)*2015-07-222017-01-26Celestica Technology Consultancy (Shanghai) Co. Ltd.Electronic apparatus
US10691842B1 (en)2017-09-282020-06-23Amazon Technologies, Inc.Electrically detectable separable bar arrangement for protection of server rack
US10169965B1 (en)*2017-09-282019-01-01Amazon Technologies, Inc.Physical mesh barrier for protection of server rack
US11662037B2 (en)2019-01-182023-05-30Coolit Systems, Inc.Fluid flow control valve for fluid flow systems, and methods
US11473860B2 (en)2019-04-252022-10-18Coolit Systems, Inc.Cooling module with leak detector and related systems
US12031779B2 (en)2019-04-252024-07-09Coolit Systems, Inc.Cooling module with leak detector and related systems
US11725890B2 (en)2019-04-252023-08-15Coolit Systems, Inc.Cooling module with leak detector and related systems
CN111432583B (en)*2020-03-242021-05-14贵州电网有限责任公司MPPT controller convenient to overhaul
CN111432583A (en)*2020-03-242020-07-17贵州电网有限责任公司MPPT controller convenient to overhaul
US12193193B2 (en)2020-05-112025-01-07Coolit Systems, Inc.Liquid pumping units, and related systems and methods
US11395443B2 (en)2020-05-112022-07-19Coolit Systems, Inc.Liquid pumping units, and related systems and methods
USD1091529S1 (en)2020-05-192025-09-02Panduit Corp.Network cabinet door
CN112462888A (en)*2020-12-182021-03-09刘萍Computer cabinet
US12188733B2 (en)2021-05-202025-01-07Coolit Systems, Inc.Modular fluid heat exchange systems
US12200914B2 (en)2022-01-242025-01-14Coolit Systems, Inc.Smart components, systems and methods for transferring heat
CN116339471B (en)*2023-03-142023-08-15佳木斯大学 A storage server for combining computer and natural language processing
CN116339471A (en)*2023-03-142023-06-27佳木斯大学 A storage server for combining computer and natural language processing

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